Document LpZ5yB7eZX43vaXjjpgGvE90d
Paint Research December, 1948
-20-
.#97' - Cont.
The low viscosities obtained on the Premier mill are due in part to the fact that the bodied oil CV 49 waa low in body. Production rates on SVP for the past six months have averaged 259 gallons per hour for the 3-roll mill and 284 gallons per hour on the Premier mill.
Exposure series 9958-10025, representing cooperative exposures with the du Pont Company, was examined during the month and a progress report was written. The conclusions are based mainly on Florida and Chicago tests, vertical south on cedar beveled siding (also north at Chicago), exposure time three years. Routine readings on the Coffeyville panels, south only, at 58 months were considered, bit no conclu sions were drawn from them since we had not inspected the panels per sonally. It appears that one of the most interesting aspects of the series as a whole, in future final analysis, will be the variation due to geographic location (du Pont has parallel exposures at Vilmington, Delaware, bit their readings are not on hand at present).
Space does not permit a detailed account of the paints in volved, ouch less a comprehensive story on the variations in behavior, as covered in the forthcoming report. The general purpose is to test variations in BCWL and BSWL in white house paints, but anatase versus rutile titanium is also a major factor. The formulas submitted by us are quite orthodox, testing 14$ BCWL (as supplementary lead), 14$ BSWL, 7$ of each and none (Ti-Sil type), with some using all anatase and some 50/50 rutile/anatase. All our pigmentations are used both with bodied oil and pre-war vehicles . du Pont submitted three similar orthodox formulas using anatase and testing the omission of BCWL, plus two others similar but high in rutile and two high-rutila formulas with only zinc oxide and extender in the pigmentation. All paints exposed ty us were applied (a) over regular Rex 450 Undercoater shaded gray, (b) over Rex 450 White and (c) self-primed.
Our bodied oil formulas seem definitely ahead of the pre-war type in durability and somewhat better in appearance, Chicago north and south and Florida exposures .being considered. The du Pont formulae using rutile TiO* seem somewhat more durable than our anatase and 50/50 formulas, bit are definitely more dirty and have a yellow east ranging from slight to vary bad. Due to the above mentioned effect of vehicle type, plus that of the titanium, it is difficult to single out effects due strictly to the BCWL and BSWL variations. It seems quite probable that low lead content contributes to the rutile yellowing effect. In a very general way, the durability results so far favor the all-BCWL formulations slightly, but the BSWL, 50/50 and even lead-less samples are also performing satisfactorily in most cases. The du Pont samples, roughly, show a definite advantage for 17$ supplementary BCWL aa against none, du Pont's "extreme" formulas (high rutile) 9hov remarkably good films in spite of the lack of leaded zinc.
A limited number of copies of this progress report will be available for distribution.
0007-SWP-044489
N22977
Faint Research December, 1948
-19-
#97 - Cont.
Acetone Extraction Data
Paint No.
Exposed to Pltravlolet Exposed at 50 F. Behind Glass
1 Week
3 Weeks
5 Weeks
534 M
25.45? oil extracted 19.74?
62.08?
580 M
19.47? "
"
13.92
44.74
581 M 19.76? " " 11.11
46.27
582 M 18.12 " " 15.90
43.75
It is interesting to note the high percentage of binder which remains extractable when such paints dry at relatively low temperatures with little ultraviolet. The P.E. soya paints show a greater conversion than the linseed control.
In order to study the dirt collection as against erosion tend encies of Rex 471, card 50, a aeries of exposures have been prepared in which the only variable is the type of TiOg used. All Tutiles are excluded due to the yellow chalk face which is associated with this type of pigment. 1405 dry end 2050 T are studied in blonds: 100/0, 75/25, 50/50, 25/75 and 0/100. South exposures are applied over gray primers to emphasize erosion tendencies, while north exposures are ovor white primer to emphasize dirt collection tendencies.
The shipment of Nytal 500 referred to in the November report has befen compared with 20 dry for general performance in SWP. Factory batches were made on the Premier and roller mill to check the general performance of these inerts.
Nytal 500 appears to be slightly lower than 20 dry in gloss, flow and consistency characteristics. The differences are not large, but a small amount of some higher consistency inert such as 1989 may be required to increase viscosity.
Rex 471. Card #50
Plant Batches
3 Roll Mill
1800 Gals.
1500 Cals.
Plant Batches
Premier Mill
1800 Gals.
180C Gals.
Inert used
Viscosity MS Brushing Flow Gloss
Grinding Rate Grind
20 dry
Nytal 300
30" 29"
Good
Good
Good
Slightly short
Good
Slightly low
114 gals./hr. 176 gals,/hr.
2K -
2H
20 dry 20" Good Good Good
257 gals./hr.
2H -
Nytal. 500 ' 20" Good
Slightly short. Slightly low
2B8 gala ./hr. 2H -
0007-SWP-044490
0007-SWP-000113860
Paint Research December, 1949
-18-
#97 - Cont. Batch Oil Combination
Drier Combination
Viscosity #3 Fresh O'Hite Set-to-touch O'Hite
584 M 19 gals. (48) 29-3/8 gals. (2)
Regular Rnc 471 18.8" 26" Pb. 0.546? Mn. 0.014?
7 hr. 15 min. Good
595 M 50? P.E. Soya Esters
592 M
it
n
590 M
n
n
605 M
n
it
Pb. 0.546# Mn. 0.014?
Pb. 0.546? COe 0*056?
Pb. 0.692? Mn. 0.014? Co. 0.018?
Pb. 0.594? Mn. 0.016? Co. 0.01B?
19.4" 22.6" 8 hr. 50 min. Good
25.2" 51.6" 6 hr. 13 min. Good
28.4" 35"
5 hr. 53 min. Good
22" 26"
4 hr. 50 min. Good
563 M + "
1/2 gal. (4232)
"
596 M 61-1/2 gals. (2) 3-1/4 " (310)
Pb. 0.546? Mn. 0.014. Co. 0.018?
Pre-war formula Pb. 0.567 ? Me. 0.054?
11 days 29.2" 26"
4 hr. 10 min. 6 hr. 30 min.
Good Fair
Verification of Initial drying rates vas made by acetone extraction of films exposed to the ultraviolet arc and a set exposed at approximately 50 F. behind glass in a south window.
Paint No.
534 M 580 M 581 M 582 M
Oil Used
Driers
Divine Recorder
Linseed
Pb ?
0.346
Mn J_
0.014
Co %
-
Tear Point Break Point
Minimum
Minimum
485 610
50? P.E. Soya H It
0.692 0.346 0.346
0.014 0.014
0.018 -
0.036
240 445
305
525
_
0007-SWP-044491
0007-SWP-000113861
#97 - Cent.
Paint Research December, 1948
-17-
Drying Properties of SWP (Card #60) Vehicle and Drier Variations Using AV 1101 P. E. Soya Ester
Batch 518 M
519
520 521 522 523 524
Oils Under lest
29-3/8 gals. (2) t 19 n (510)
29-5/8 19
n n
(2) AV 1101
nn
n nn
it n H
nnn
n VI n
24-Hour Tack Gloss
Definite Definite -
Good Pair
Definite Definite Definite Slight Slight
Fair Fair Fair Fair Fair
Paint Viscosity Freeh OUite
19.2" 15.8"
29" 16"
15.6" 15.6" 15.4" 15.6" 15.4"
16" 15.8" 15.8" 16.2" 15.8"
Work has been under way to establish a formulation for SWP using SO% of the oil as P .E. soya esters, particularly to obtain proper brushing, flow, gloss and drying characteristics.. It appears that the following com bination of oils would be suitable for SWP does White and 4SO Undercoater.
Re* 471
Rex 450
(2)
9-1/4 gallons
6-1/2 gallons
(798) 15 " 15 "
AV 1100
5
"
14-1/2 "
AV 1101
19
"
7"
Work has also been under way to determine the optimum drier combination to use in SWP made with AV 1100 and AV 1101. This work has not been completed to date, but the following drier combinations com pared for set-to-touch and over night dry as Indicated.
% 0007-SWP-044492
Paint Heaeareh December, 1348
-16-
m - SWP 471
Three drama of P.E. soya eaten were received from Cleveland for
evaluation in SVP. Thia shipment consisted of two drama of AV 1100 and one
dram of AV 1101.
AV 1100
AV HOI
Color
n 11-12
Acid Value
2.5
. 2.2
Viscosity
13 sec.
46 Bee.
Acetyl No.
6
0
The higher bodied sample ms checked initially for drying pro perties vhen used In conjunction with (2) In the proportion of 40 AV U01 and 60 (2). In the Initial teats an effort was made to detenolne the optimum drier combination to be used in order to obtain the same drying properties aa a blend of 40'S (310} and 60 (2). The diying properties of the various vehicle and drier variations are as follows:
Drying Properties of SUP (Card #50) Vehicle and Drier Variations
Using AV 1101 P. E. Soya Eater
Batch .Oila Under Teat
PrtaaJj MaMl
Pb Mn Co
Drvine Time Set-to-touch 0'Nlte
518 M 29-3/6 gala. (2) 19 * (310)
0.346 0.014
7 hr. 30 min. V. good
519 29-3/6 " (2)
0.346 0.014
19 * AV 1101
9" -
n. * .
520 n
n n 0.346
0.018 9 " 43 " n n
521 n
n n 0.346
0.034 7 " 8 M W tf
522 n
h n 0.346 0.014 0.018 6 " 28 " II w
523 n
rr n 0.692 0.014 0.018 5 23 " n ft
524 ii
n n 0.632 0.014 0.036 4 18 " n n
(Cont.)
0007-SWP-044493
0007-SWP-000113863
Paint Research November, 194B
-25-
m - Cont.
The lead substitute driers have a rather sweet smell, even at low concentrations, which would be objectionable, particularly in interior formulations.
The following series of exposure tests were examined during the month: 1
1. Panels 0518-51 F, C were discontinued after four years' exposure at Chicago and Florida, The points include pre-war and bodied oil SWP Gloss White using half, regular .and twice the regular amounte of lead and manganese driers, also plus cohalt, individually and in combination. Failure at Chicago is principally by erosion, while in Florida there is considerable variation in checking and cracking. Results are Bomevhat erratic, moving conclusions difficult. Cobalt seems to improve durability, with slight improvement due to doubling lead, but also rather surprisingly due to doubled msngsnose. No sample performed better than that with the regular Pblln-Co ratio. More study is indicated.
2. Exposures 10618-26 F were examined after 24 months at Florida. The main pert of the series tests several heopseed oils in Rex 471 SWP Gloss White of 1-19-45 (mtile-anatase TiOg) as follows: (2) and CVR-126 bodied heopseed; AV-1001 alkali refined hempseed and CVR-126; AV-1001 and (48), AV-1000 raw hempseed and (48). All looked good, slightly more white than the regular guides, but tending to be a little more "thin." This is more noticeable on the Chicago panels, where the "show-through" indicates possibly a little more tendency to erode; There is no real film failure in any case. The minor part of the series teats the same Rex 471 formula using Kelvitol, a catalyzed linseed from Spencer-JCellogg, with (2), plus tha same combination in Rex 462 SWP Cream of 4-16-45. The Kelvitol in white looks almost exactly the same as the hempseed oils, clean and durable up to two years. The only departure from normal in the series Is the slightly better color in Rex 462 with Kelvitol at Florida as against slightly more fading at Chicago.
3. Panels 10764-71 F were given a final examination after two years of exposure at Chicago. Both the S-W and Martih-Senour two coat systems were employed and applied both by brush and Bpray on new cedar and yellow pine siding. The Chicago panels were also examined after 29 months' exposure, and included brush and spray application on badly weathered lumber. In Florida the Martir-Senour system is less durable, with the heavy spray coats having the best appearance, normal spray coats slightly inferior to brush coats. In Chicago the failure of spray application to fill in deep cracks has resulted In more serious failure than where the undercoater was applied by brush.
0007-SWP-044494
0007-SWP-000113864
Point Research November, 1948
#97 -22-
The following points vara node up in preparation for subsequent exposure:
1. SVP White node with raw and bodied Neutral Conophor oil obtained fron lewis Berger and Sons. Conophor oil has on iodine value of 200 or better (sample'209.8 per Resin Research). Comparison with all lin seed SWP follows:
Viscosity #3
Drying
ptfP TJa-ingFresh O'Nlte Set-to-touch 0'Nlta Brushing flow Gloss
(2) and (310) 20"
27" 6 hr. 45 min. Good Good
Good Good
Conophor Oil 19"
20" 4 " 25 " Good; Good not tough.
Good Good -
2. SWP Whites and Colonial fellow tints on straight linseed (2) plus (310) binder and also plus 6 gallons blown (798) replacing an equal volume of' (2); also with vehicle consisting of 16 gallons (2) plus
32-3/8 gallons (503), and the same replacement with 6 gallons (798). This is a supplement to Series 8669-80 covering the general per formance of transparent litho oils of the 300 and S00 series. The new tests were suggested on the basis that all the tints in the original series made with the 500 series oils wore very heavy in body after four years' storage whereas the whites made with the 300 series all maintained satisfactory viscosities.
Two lead substitute drier mixes, RC 1033 and RC 1039, were sub mitted by the Resin Research Department for evaluation in SWP, The sub stitute driers were compared for drying properties against (4230) lead naphthenate drier and also in conjunction with the regular amount of (543) manganese drier used in SWP, The driers were introduced to the
extent of 7/8, 1-3/4 and 3-1/2 gallons per 100 gallons of paint.
The lead substitute driers were not equivalent in drying to (4230) regardless of concentration if manganese is not added. If man ganese drier is used RC 1038 and RC 1039 are approximately equivalent in drying to the regular amount of (4230) and (543) used in Rex 471.
Batch
Drier Under Test
Set-to-touch Time
With (543)
Without (543)
385 M 386 M 387 M 388 M 389 M 390 M 391 M
3-1/2 gal. RC 1038
1-3/4 n
n
7/8 ir
n
3-1/2 rt RC 1039
1-3/4 ti
n
7/8 ii
fl
1-3/4 n (4230)
5 hr. 15 min. 5 n 30 " 5 rt 45 " 5 t 30 " 5 n 45 " 6 ii 5 rt 45 "
19 hr. 45 min 17 n 15 " 16 n 25 16 n 25 " 18 H 5 19 it 15 " 15 n 45 "
Over night dry: With Mn drier - good, without Mn drier - slightly soft.
0007-SWP-044495
0007-SWP-000113865
Paint Research November, 1948
-21-
#97 - Cant.
the Vegetable Product# Research Laboratory submitted two P. E. soya esters, AVM 16 heavy body (46 seconds) and AVM 16 light
viscosity (14 seconds) The samples were checked for drying In clear films and in SUP. The samples were rather small so we were unable to complete the various tests.
Drying Teats (On Clear Oils)
Batch
Oil Under Test (Plus Driers*)
PqUMLTiPft Set-to-touch 0 Tf ite Tack - 24 Hours
415 N
AVM 16 (Light Body) 3 hr. 40 min. V. good Slight tack
418 M-A AVM 16 (Heavy Body) 3 " 40 " ft ff
ff It
418 M-B
(310)
5 * 10 * II ff
Definite +
416 M 417 M
40? AVM 16 Heavy 60? (2)
40? (310) 60? (2)
5 " 40 " Good
6 " 25 "
ff
Slight + Definite
Same percentage of driers used as in Rex 471: 46-3/8 gals. Oil 5/8 (543)
1-3/4 (4230)
SUP Gloss White Tests
Batch Oil Under Test
Viscosity''
#3 Orifice'
Divine
Fresh 5 D6.V3' . Set-.to-touch Q'Nite Gloss Color
415 M All oil as AVM 16 (Light)
35.4n 36.4"
416 M 19 gal. AVM 16 Hvy 18" 29-3/8 gals. (2)
19"
7 hr. 10 min. Good
7 n 55 i
n
Lower V. si. than yellow 417 M
ft ff
417 M 19 gals. (310)
26" 32.2" 7 " 25 " * Good OK
28-2/8 gals. (2)
0007-SWP-044496
0007-SWP-000113866
Paint Research November, 1948
-20-
#97 - Coat.
Prices used in this pigment cost comparison (as of November 15)
Drv No.
t/Cvt.
Dig. No.
S/Cwt.
9 18 20 412
414 511 1405
$21.50 22.40 2.00 15.10 12.25 16.10 18.25
1695 1897 2030
2182 2188 2296 2507
$25.00* (Estimated) 7.75
18.25 7.25 8.00
14.00 2.00
*1895 dry cost estimated on basis of September, 1946 cost at $11.50 by comparison with 1128 at $9.25 and 1408 at $14.75. Prices of 11/15/48; 1128 dry - 325.00, 1403 - $18.25.
A shipment of Nytal 800 was received during October from R. T. V anderbilt Company for a trial run in SWP, Laboratory batches of Gloss 'White were made with this inert and 20 dry and the paints were com pared for geneml characteristics. Factory batches have not been made to date.
The laboratory batch of SWP made with Nytal 800 was Slightly lower in viscosity and gloss than the batch made with 20 dry. However, the batch Bade with Nytal 800 ground oat in ouch less time with equal texture of the finished paint (2 B).
SWP Hade With Ny*Jd
nd 2ft T)w
Batch Inert Used
Viscosity
#8 Orifiiec
Brush
Fresh O'Nite 4 Devs ing
400 M 20 dry
22.6" 28.8" 28"
Good
401 M Nytal 500
24" 27"
26.1" Good
597 M 250# Nytal 300 26.4* 80.6" 29.4" Good 50# 1989
Grinding Flow Gloss Tima
Good Good 7' 57"
Fair Fair 4' 25"
Fair- Fair 4' 46"
Residue (525 Mesh) Oil Absorption Bulking Value
20 Dry
2.g 51 4.21
Nytal 300
0.52$
56.8
4.16
0007-SWP-044497
0007-SWP-000113867
Paint Research November, 1948
-19-
#97 - SWP 471
Due to the increased cost of lead and sine pigments, serious consideration has been given to the prohlem cf reformulating SUP Undercoater and Gloss White. The exposure history has been reviewed and it was concluded that to modify Rex 471 by eliminating the B.C.VX. would result in only a minor increase in erosion. In order to maintain the reactive pigment quotient in the formula it was decided that to offset
the elimination of B.C.W.L. the leaded zinc should be increased by 25 pounds. There is extensive exposure experience supporting this new formula and no apprehension is folt regarding its durability beyond the increase in erosion tendencies mentioned.
A pigment cost comparison has been made between SVP and various paints being sold competitively in the field. Composition was estimated on the basi9 of label analysis and weight per gallon of the paints. In addition to the cost analysis a quality evaluation was made comparing these paints for color, opacity and gloss. Results of these tests are tabulated below
Summary of House Paint Characteristics
Competitive
Photo Pigment volt
Cost Gloss
% Bri^it-
ness
A-B G 0.008" Gauge Color Contrast Index Ratio
Devoe - 547 House Paint du Pont - 40 Outside White Montgomery Ward - 751 TiOg White National - Dutch Boy 110 Pittsburgh - 1-54 V Sears 143 White
$126.90 116.81 104.42 159.50
81.53 125.09
33
51 79 58
34 65
85.4 6.3 96.9 80.3 7.3 97.3 81.7 8.5 97.6 79.5 9.4 97.8 83.8 7.5 98.4 82.0 6.2 97.3
SWP Gloss White
Rex 471 - Card #49
Rex 471 -- no BC*W*L
Rex 471 -noB.C.Wi. 414/511
Rex 471 -
414/18
SWP Fume Resisting Type
114.77 106.89 100.4B
106.04
60 61 63 67
SI.5 8.0 96.9 81.6 7.8 97.2 84.5 5.9 97.9 79.5 9.3 97.9
Rex 436 - Card #13 Rex 436 - 414-ZnO (50 color) Rex 436 - 414-ZnO (65 color)
One Coat Hotis Paint
82.86
80.37
80.87
73 72 68
82.3 3.0 98.6
79.4 7.8 93.5
80.3
7.0 98.4
Devoe SWP- CR 4697
99.03 78 160.30 61
87.2 6.0 99.1 83.5 8.1 98.8
0007-SWP-044498
0007-SWP-000113868
Paint Research October, 1948
#97 - Cont.
-16-
(d) Rex 450 - 471 vs. One Coat House Paint White.
(e) Rex 450 - 471 va. SWP with 4.25 pounds oil per gallon.
(f) Ono Coat House Paint with basic lead silicate.
With reference to (l) above, panels 11116 - 11122 F, C were examined after 18 months vertical south at Florida, and 19 months south and north at Chicago, all on cedar beveled siding with Rox 450 Undercoater. The basic fonnula 13 Rox 471 of 6-15-46, using all linseed oil and all 1403 anatase Ti02. Tho three special formulas use raw and bodied soya oils as detailed below:
(a) All oil as (1273) and bis-bodied soya CV 7027. Seams inferior in durability at Florida, some checking and cracking. No failure at Chicago. No real dirt differences at present but was dirtier than regular during first year.
(b) All oil as S. 0. #500, raw and bodied. S'eeos equal to regular in durability. Same-dirt history as (a).
(c) Same as (b), hit increased drier content. As (b), but shows a very slight tendency toward checking.
(d) Regulars of 4-8-42 (all 1405, pre-war type) and 10-13-42 (similar but 2173 dry) performed about aB tho 6-13-46 fonnula, but collected more dirt, especially with 2173 dry.
In the Monthly Report for May, 1948 reference is made to a sample of lead glyceroxide of cottonseed oil monoglyceride submitted ty Dr. Grumaitt for evaluation as a drier. SWP made with this material and regular load naphthenate drier (4230) were compared for granulation, package condition and drying characteristics after approximately 17 months1 storage.
As indicated below, the paint containing the lead glyceroxide is slightly better than the regular for package condition and granulation and appears to be equivalent in drying properties to the regular formula. However, in our previous report we found the lead glycoroxide to be daric in color and bad in staining. We also stated ths lead glyceroxide pro duced a rather heavy precipitate that settled out aftor standing for a few days if dissolved in mineral spirits to the extent of 10f5 metal.
Experimental
Drying
Package Granu-
Batch No, Formula Drier Set-to-touch O'Hite Condition lation
835 K
Rex 471 Formula 5-13-46
(543) 5 hr. 40 min. (4230)
Good
Good
Very slight
837 K
(545) 5 hr. 35 min. Good Lead Glycoroxide
Gc^c'
None
0007-SWP-044499
0007-SWP-0001
Paint Research October, 1948
-15-
#97 - Cont.
Exposures will be made south and north vertical in Chicago and Florida. The panels will be painted both this fall and next summer to check the effects of drying conditions on dirt collection and durability. The paint3 will also be checked for viscosity changes over a period of six months.
Experimental paints were made on the SWP formulation with: (a) 60 pounds 16 dry, (b) 60 pounds lead linoleate, and (c) without any lead introduced as the carbonate or linoleate. We have always favored the use of some carbonate in SWP to decrease erosion and it may be that similar results can be obtained with equivalent or lower percentages of lead linoleate.
Panels prepared for exposure during the month include:
1. 13225-58 CS, CM and F. This series is a repeat of an earlier series 10945-63 covering the use of various soybean oils in SWP. The original paints exposed in the late fall of 1946 showed early dirt collection which was retained, also bad and spotty fading. The oils used included (310) linseed, HB 8474 (CV 7027) Bis Soya, RB 8471 (CV 7028) SOg treated soya, RB 8472 (CV 7029) Catalyst bodied soya, RB 3473 (CVR 584) 80/20 soya/tang, and RB 8477 (CVR 570) P.P.0. #500 bodied soya. Because of the poor appearance of the first series it was decided to repeat it, using the regular shading colors specified for Rex 478, Bf 10 and BZ 40. The series also includes whites using 1403 TiOa. The temperatures during the painting period ranged from 47 to 62 F.
2. 13239-46 CS, CN and F. This, is a repeat of aeries 13162-69 which was painted in August with temperatures ranging from 57 to 85 F. and low humidity, after which there was a period of very hot weather (up to 100 F.). Thi3 new group was painted at temperatures ranging from 57 to 69 F., and high morning and evening humidities. The paints include SWP Whites and Colonial Yellows, using (310), CV-49 and (3316) as the bodied oils.
3. 15252-61 CS and CN. This series covers panel exposures of the paints used on test houses during this past summer. Briefly, the teats arc:
(a) Rex 450 - 471 and Rex 70110 primer on aluminum siding.
(b) Reproduction of National's Dutch Boy White vs. actual sample National's #110 Bright White vs. Rex 450 - 471.
(c) Rex 450 - 471 vs. Rex 450 - RB 2349 SWP with basic load silicate.
0007-SWP-0001
0007-SW P-044500
#97 - Cent.
Paint Research October, 1948
Page 14
cn <n
S3
TO
_?s ' S' w
03 CD X
A 03 O)
HOWKCn
Cl Cl
ww
to cn (ft ^
Sco '3
04 CD C* X
Cl
r0o4
TOO
W o* to ccnx
(ft w
tt 3
a a a* ft
H Cl TO TO
-TOO
I
03 cn TO 3
O cn
Ol
H0)
<8
I
i fcr
CO
H 04 CD Ci
H (ft ._ S'3 Cfl
%% o* S ft
CD Cn
H 04 Cp W
CD OQ * S'3
ta
503 a50
Co0>1 *con>
H 0 CO H
CP (7Q ^ S>3 tt
S S? O-o *
0cn9 c0n
W 04 CD H
3 (ft ~ s-3
03 *
figttf O-OoJ *A01
& Of
M 03 CD OHl l*
*
aO <D o"
as
os cn
0? TOO ToO TOO 8
CO
?o
to
TO
TO
P
8
STO Cl
TO Cn
Ocn
H 03 CD HCn
tt
S31
CD * 01 A cn cJ> o cn
TO TO
TO
01
*3
ff
CP p e+ o cr z o
*)
3s-s<-
S4
a
CXl &
P
|<2Po+
a gaX1
*
8
aS' o p
atn
usr q
p<
Jt &a HHCof*l
o0 ft
a
CJ H1 C
< ob,
_ **3 H
g,g>(mS'
c+ Q. ffl $^
0007-SW P-044501
0007-SWP-000113871
#97 - Cont.
Paint Research October, 1946
Page 13
CO M
tpo ^A
Fw
"S
s* *O Cn
Cpon
09 w
S?
<O0 iof*
os cn
7e0g
F CM oa cn F
N,Ft, ,F,1\,
ro 3J
ro t o
_ TO 3 P, a-
7o0* cCmM
TO F cn 05
F *J CM to 0 F
F TO i pps FP UP
0hSJ
sr *pa <P
wf3 5
CD
F TO Cn CM
oa TO F FP NTO S W * <8
F
S
04 -O
pa F
H *sj TO CD 0 04
a TO TO 5 _
CA P O __
cm a
* 02 HJk
wr CD
TO
ro 03
F CM <D cn
TO 0
&s to *
8 S'
o*
P3
70 O
F 03 CD O*
TO F
ts W '
9W
F -O
FW O CM
TIO sO
w
t o ro
o-C3M
* -O
CD F
F <D
ros
w(B F 0 sr rsi 0
ntj 4 O xa IT
o03
O
TO 70 ro ro O CD *0 O ro 25
a> F
Fro
TO rcon Cn
o 9 03 TO cn
sr (D
0 IT c*
H
1 F
TO
Cn
*cpn
CD
cn
0 70 1
ST* O O F
B
3&
Q P CHfl
s
fcj E
0 c O
b ST
a
oa
oo
W
I
oF
&rXo
-o
F
o* Fs.xr
to
cn
< HP
F
CO
a aO0
o
o
oo
ocu
1
S2
CFD o^ 75
a&
mj S' *FoC3QTO*
sa sa* aot o
+
oo ao
o
^S`
8P ? TiOr
**j a
PF 4
o
< 4
i1t gWF-
1 TSO'
fCc-t oPnOcjbC>F*Pp*i-.'
lTSFfO.
5 ro
0a* frii
0007-SW P-044502
0007-SWP-000113872
#97 - Cont.
Paint Research October, 1948
Page 12
I-* Ol
to Ho to _ f^3
CO
*aj td
o ?p
o*
SI ** spa
H CM to oco
3
HCD COM TO ^
U
H CM CD O
05 <5 --
3
ca
H Ch CO o
tn M_
ca
as*
oSJ *it*
83
8S
,,R
3a
as
5 }i{ * CM S CM p
s
X
8a
83
X
<8 *<53
H H to
w
CO -3 o CO
H cm w cn O I 1 &
TO TOs
87
,,* %a
4* *q 0 P
"Ptt _ * --8
TO CM CM CM 4^ TtnO Hos SP - V-/W
TO TO
CM CM
TOt o
to
H CO
J3
TO *-*
TO CM
TO CM
0 s* TO
a
c+
tn tn a* 0> o>
33 3
a
a3
8!04
CJ1
a.
CM cn
TO
CM
33 3 a 3 3
33 3 3 3 =
Good
CO A. 5 CD H
TO
8 TO
4ro -<-
tstr Hca-
o o
4
05 sr *1
tx cn B
f
>-* jr
2
c
3
U3
!
0
S' X *>
ICb
w o K 4* otn
Good
5s
3
a
3
=
3 3 3 3 3' 3
-3
fs 3
P
Sr
hs era
g*
a
9
a
0007-SW P-044503
0007-SWP-000113873
Paint Research October, 1948
-11-
#97 - Cont.
Crying Tests (Cloar Films)
Batch 200 M 201 M 202 M
Oil (1275) P.P.G. 500 Scya AVM 42
Set-to-touch 12 hr. 55 min.
9 " 37 " 9 " 40 "
Over Night Drvine Fair
Very good Good
(5516), the 80/ 3oybean/20/ tung bodied oil which was used in SV7P has been criticised for dirt collection tendencies, particularly when dried under unfavorable conditions. The tung oil makes the film vulnerable to surface wrinkling and dulling. The Resin Research Depart ment submitted a number of oils largely of a composition 65;' soybean/ 55/ tung for evaluation in SUP to observe whether any improvements could be made. The oils include:
Samcle RB 9646
Composition
65/ (1275) 35/ (140)
Additive None
Mz Z,
Acid Value 2.9
RB 9647 RB 9650 RB 0733 RB 0734 RB 0735 RB 0736 RB 0759
RB 0740
RB 0741
t! II If It n n
80/ (1273) 20/ (140)
n
tt
0.1/ Zn 0.05/ Zn 0.1/ Vultac n 0.05/ Vultac #2 0.05/ Thiofide 0.025/ Thiofide None - Regular (3316)
z, z,
^2 z2 Zb z2
As RC &739 but 0.03/ 1128 diy in cook. Color dark.
As RC 0740 but C02 blow, no S02.
Z, - Z2 Z i - z2
3.1 4.6 4.6 4.3 4.6 4.8 2.9
2.S
4.0
The paints made with these oils wore checked for -iscosity, brushing, flow, gloss and wrinkling tandencies, with the folio-'ing results.
0007-SWP-044504
0007-SWP-000113874
Paint Research October, 194B
-10-
#97 - SW7 471
Page 21 of the Paint Research Report for August, 1948, out lined a series of tests being made to study the moisture resistance of several paint systems. The comparative moisture permeabilities on these paint systems are reported below:
Permeability Grams per 22 Hours
Rex 15 Lead-in-Oil - 3 coats
.05 27
Rex 450 - Rex 471 system
.0546
Rex 471 - Rex 471 self-prime
.0735*
Rex 436 - Rex 456self-prime
.0589
RB 2376-RB 2376 du Pont Moisture Resistant Paint self-prime.0584
Rex 45000 - Rex 45000 Kem Bulletin White self-prime
,1005*
Rex 471 - Rex 471 36? PVC self-prime
.0592
"
" 45? "
ii
.0537
"
" 50? "
it
.0573
"
" 55? "
ti
.0502
"
" 60? "
ii
.0772
"
" 65? "
it
.1156
*These valueb appear to be.in error and are being repeated.
The Vegetable Products Research Laboratory submitted a quart sample of AVM 42 prepared by the "Directed Ester Inter-Change" process referred to in patents recently granted to Proctor and Gamble for the treatment of oils. The oil was compared with Pittsburgh's #500 selected soya and (1273) in the clear for set-to-touch and over night drying characteristics. (543) and (4230) were used as driers at the same metal content as Rex 471.
0007-SWP-044505
Paint Research September, 1948
-10-
#97 - Cent.
SWF Gloss White
Batch
Drier Set-to-touch Over Night Color
OJ 234 M (4230) 6 hr. 25 min (543)
Good
Good
OJ 235 M RC 0258 4 " 10 " Very good Poor
OJ 256 M RC 0259 3 55 " Very good Poor
Kea Namel Snov White
OJ 237 M
(4230)
(4231) (4232)
3 hi-. 50 min.
Good
OJ 238 M RC 0255 1 " 50 " Very good
OJ 239 M RC 0256 1 " 30 " Very good
Qood
Poor Poor
Enaaeloid White
OJ 240 M
(4230) (4231) (4232)
1 hr, 50 min. Very good
0J 241 M RC 0253 1 " 35 " Very good
OJ 242 M RC 0254 1 " 45 Very good
Good
Poor Poor
0007-SWP-044506
0007-SWP-000113876
Paint Research September, 1948
-9-
#97 - SWP 471
Panels prepared for exposure included the following groups;
1. 13162-9 GS, CK and F. SWP Gloss White and Colonial Yellow tint, using as the bodied oil portion of the binder (310) all linseed, (48), 50/50/20 linseed/soya/chinavood oil, and (3316) 30/20 soya,/ chinawood. Exposures south and north vertical at Chicago and south vertical Florida. These panels were painted over a tempera ture range from 70 to 87 F., with relative humidities from 375 to 45?. The same paints will be applied under less favorable con ditions and exposed late this fall to observe effects of variations in drying conditions.
2. 1315C-2 CS, CN and F. SWP Gloss White regular and a special using hexane extracted linseed oil to replace the regular (2) raw linseed oil. The usual 19 gallons of bodied oil was used, in this case as (310). Exposures south and north vertical at Chicago and south vertical Florida.
3. 15146-13149 CS, CN and F. SWP tint base versus a duplication of Dutch Boy 124 Buff pigmentation, tinted with identical tinting colors. In the 1947 series National's 124 Buff was definitely superior to the SWP tint base shaded to the 124 Buff shade. This new set was prepared to determine whether this superiority was due to the tint base pigmentation or to the use of better tinting colors. Exposures south and north vertical at Chicago and south vertical Florida.
4. 13183-96 CS, CN and F. SWP Gloss White and Berkely Yellow compar ing regular receipts of International's 3 X Asbestine with their mfcronized talc CW 2679, using laboratory batches of paint. Also a supplementary group which includes both Vhite and Colonial Yellow using factory pastes reduced in the laboratory, in which 20 F, the combination of 2203 and 2201, and Nytal 300 were used, respectively, as the extenders. Exposures south and north vertical at Chicago and south vertical Florida.
Special driers RC 0253, RC 0264, RC 0265, RC 0256, RC 0268, and RC 0259 were submitted by the Resin Research Department for evalua tion against the regular metallic driers in SWP, Enamoloid and Kern Kamel Snow White Gloss. The special driers gave faster drying than the regular metallic driers in SWP and Kem Narael Snow White Gloss and equivalent dry ing in Enameloid White. They produced considerable staining and dis coloration in all the formulations. An improvement should be made in the color and odor of these driers.
0007-SWP-044507
0007-SWP-000113877
Paint Research August, 1948 -23-
#178 - Studies of Dark Colored House Paints National Paint, Vacnish and Lacquer Association Scientific
Section Circular 720 describes work on metal phenolates as anti-oxidants in dried films. This followed a study by Dr. L. L. Carrick and associates of confiscated patent 1,842,207. A sample of clear vehicle of 100JS solids as used in Rex 493 Woodland Brown was treated with 1% copper phenolate. The treated and untreated binders were drawn down on glass, air dried for one week, and placed in the arc cabinet. After 2689 hours, the untreated vehicle has very dull gloss and considerable disintegration of the film has occurred. The treated vehicle still has good gloss and no film fail ure visible to the eye.
Panels 12984 - 90 CS, CN and F were prepared for exposure south and north vertical at Chicago and south vertical in Florida using SWF Woodland Brown regular, also specials using 1 and 2J5 copper phenolate based on the vehicle solids. In addition paints were formulated with copper hydroxynaphthenate with a copper content equivalent to 25 pounds of cuprous oxide and also with half that copper content. The regular formula carries 25 pounds of 89 diy. A special was included omitting the copper oxide. (See Monthly Report February, 1948, page 19.)
0007-SWP-044508
0007-SWP-000113878
Paint Research August, 1948
-22-
H7 - Cent.
The following series of paints were prepared for subsequent exposure:
1. In the 1947 series Dutch Boy 124 Buff was definitely better in tint retention than the corresponding SWP tint. Paints were prepared coopering the Dutch Bey and the S-W plantation, using lead-free zinc oxide as well as co-fumed leaded zinc. The paints were all shaded with BY 10, Hf 20 and BO 30. Exposures will be at Chicago south and north vertical and south vertical at Miami.
2. Due to potentially lower prieos for soybean oil it w bb decided to repeat comparisons of SUP node with all linseed versus linseed-CWOsoybean combinations such as (3316) and (48). (310), (3316) and (48) were used in the regular amounts in both Rex 471 White and Rex 465 Colonial Yellow. The exposure panels will be prepared both during favorable summer drying conditions and late in the fall at lower temperatures.
3. The Northern Regional Research Laboratory has suggested the use of dry calcium oxide ground into paints to accelerate drying. SUP Gloss White batches were prepared based on the following binders: (a) all linseed, (b) 60% linseed, 32? soybean, 8% chinavood, and (e) 82% soybean and 8% chinavood. The paints were formulated with 4$ CaO on the vehicle solids and 4% on the pigment ty weight. There was no improvement in set-to-touch time and somewhat slower through drying except in the case qf the 9Z% soybean-3? chinavood paint where set-to-touch was accelerated slightly. The paints will be exposed at Chicago.
Panels 15003-19 CS, CH and T were prepared for exposure south and north vertical at Chicago end Bouth vertical at Miami. The points include both Rex 471 SUP Gloss White and Rax 493 Woodland Brown using polyallyl esters of soybean and linseed oils. The Monthly Report, for November, 1947 discussed the initial tests with experimental data. The polyallyl ester paints dried wall with little after-tack but the Woodland Brown IOC? polyallyl ester paints showed tendencies to wrinkle. In the current teste the polyallyl ester contents have been reduced to 10 to 15 gallons per 100 gallons of point.
0007-SWP-044509
Paint Research August, 1948
-21-
#97 - Cent,
Iodine No.
Acid Value
Extracted Linseed
176.7
3.0
Stock Sample (2)
179.1
3.22
The two paints were similar in brushing, flow, drying and gloss. The solvent extracted oil produced a somewhat thinner paint. Exposures will be made at Chicago north and south and Florida south only.
Haw Oil Batch Used
Yiacoaity #3
Ssdas
Fresh O'Nite Set-to-touch O'Nite Brush Flow Gloss
102 M (2)
26" 52"
103 M Extracted Linseed
20"
21"
7 hr. 43 min. Good 7 hr. 53 min. Good
Good Good
Good Good Good Good
The permeabilities of draw-down films of pre-war SYiP Gloss White and current Rex 471 were determined by the electrical resistance method. Both films were found to be substantially equal in permeability, having a resistance of 1200 ohms each. Another test on these samples will be run ty the moisture-permeability method.
A series of teats was started to explore the problem of formu lating house paints which will tolerate some moisture within the surface
on which they are applied without showing blistering and peeling. The east-west exposure fence at the Chicago farm has been remodeled to carry
moisture within the wall. The following exposure comparisons are being made.
West Face of Fence
1. Lead-in-Oil - 3 coats.
2. Rex 450 - Rex 471 system.
3. Rex 471 - Rex 471 self-primed.
4. Rax 456 - Rox 436 " "
5. RB 2376 - RB 2376 duPont Moisture Resistant Paint self-primed,
6. Rex45000 - Rex 45000 Ken Bulletin Whiteself-primed.
7. Rex 471 - Rex -171 36% FVCself-primed.
8.
9. 10.
Ditto
tt
?1
45%
50% 55%
It It It
11. (I 60%
ft
12. It 65%
It
0007-SWP-044510
I
0007-SWP-000113880
Paint Research August, 1948
-20-
#97 - Cent.
As Indicated by these data, we were unable to obtain the stand ard viscosity or weight per gallon with raw materials sent from Gibbsboro. In our laboratory work we could not detect any manganese float on any of the tests made with Gibbsboro or Chicago raw materials. The quart sample of Gibbsboro Rex 450 production dated F 2168, in which the manganese was replaced with calcium, was found to be more tacky after drying over night than the laboratory batch made with the regular amount of manganese.
The initial results indicate that further work must be done on this problem. A new supply of Gibbsboro raw materials has been requested together with a copy of the formulation and a break-down of liquids such as FV 74 which are being used in their production. Semples of our raw materials have also been sent to Gibbsboro for their inspection.
In further work along similar lines an effort was made to asso ciate drier composition, drier source, and oil composition with manganese float and drying efficiency. House paints were made using lead, manganese, cobalt and calcium driers from regular suppliers. Testa were made both with single driers and combinations of driers. A total of eight manganese compounds were tested, consisting of naphthenates, Octoates end Hexoates. The bodied oils used were (510), (48) and (5316).
None of the paints prepared exhibited manganese float. Between the three oils tested the mass of evidence shove (5316) to diy to touch most readily with the (310) averaging 5$ slower and (48) about 15$ slower. All of these materials dried well over night and there is little differ ence after one week.
It has been suggested that lead pigments and possibly leaded 2incs promote the diying of house paints even whan lead driers are used. To investigate this possibility paints were made based on Rex 436 - SWP Fume Resisting White. Zinc oxide substitutions were made in the above using 414 and 412 dry leaded zincs as well as a secondary series which was made including 50 pounds of baBie carbonate white lead in each pig mentation. Two drier combinations ware used: (a) the conventional Rax 436 drier blend and (b) the Rex 471 drier combination.
Set-to-touch and over night dry indicate that 414 does not promote diying tut that 412 does. The Rex 436 drier combination generally is faster than the Rex 471 in set-to-touch tests but all were very close over night. Active lead pigment such as basic carbonate white lead pro motes the drying of paint oven in the presence of lecd driers. Storage tests will be made and the diying checked after six months.
The Linseed Oil Mill has submitted a sample of solvent extracted linseed, oil for evaluation in SWP. The extracted oil was compared with regular raw linseed oil in SWP Gloss White, fonmla of 4-19-48.
0007-SWP-044511
0007-SWP-000113881
Paint Research August, 1948
-19-
#97 - Cont.
The tendency towards settling observed in the institutional house paints has pronpted a study of the manner in which this character istic might he affected fcy the addition of suspension or wotting agents. Test batches of Rex 471 SWP Gloss White were prepared using the formula of Card #49 and adding 6 pounds CV (2343) Acto 450, 6 pounds 2270 dry lecithin, and 5 pounds 1826 dry calcium stearate per 100 gallons, re spectively. The samples were packaged in one gallon containers and placed in storage.
The cans were examined after 30 days using the spatula method. The control or agent-free material showed considerably more settling than any of the agent fortified samples. There were no observable dif
ferences in the extent of settling between the various agent treated batches, but the degree of thixotropy near the surface of the pigaent pack was greatest with calcium stearate in the batch. This should trans
late itself into relatively better suspension for thi3 sample with con tinued ageing. Its effect upon the viscosity was not determined in this observation as the inspections were mode carefully so as not to disturb the package at this time.
A second settling teat series va3 set up for Porch and Floor Enamel - Rex 155. In this the effect of Acto 450 CV (2343) is being checked against the control material as formulated on Card #2, 3-5-47. The 30-day inspection of these materials showed considerable soft settled material with a slight advantage gained through the use of CW (2343). The extent of settling was not objectionable in either case.
Work is under way to determine the reason for the"menganese float" on Gibbsboro production of SWP and 450 Undercoater. Two sets of experimental paints were prepared, one based on Gibbsboro raw materials and the othor on Chicago raw materials. In each case three variaticne were made in each basic formula as follows:
Vis cosity #5 Rex 450 - Card Wo. 26Manganese Drier tft./Gal. Fresh 3 Days Color
124 M 125 M 126 M 127 M 128 M 129 M
Laboratory Raw Mat'Is (543)
rt
ft it
(543)
it n it (4231)
Gibbsboro n
it
(543)
w
it tt
(543)
ft it rt (4231)
Chicago Gibbsboro Chicago Gibbsboro
Chicago Chicago
14.58 14.40 14.39 14.60 14.62 14.62
15" 15" 15"
42" + 42" + 40" +
21.4" 21.4" 21.4"
35" 36" 35"
Std, n rt
it
H
r
0007-SWP-044512
0007-SWP-000113882
2nd
3rd
2nd 2nd
TG 5
*A11 were close In h id in g .
Paint Research August, 19<8 -18-
-9 t?
f? S' Xpn ots "SW S
*
31
1
*3 1 WO 05 * CHO CO
r<D+ ii 1O OJ P ro i CO o>**3 con 1 o 8! to
5?
<* i
1 in M0
si 3M ^h o CCDD o_
O
*9
CaD>
3
( 01 o KCD MCX
CD O* Co
* >Q ?o |
M tM o ro
o 03 cn GO CO >
XX
pP 3t W =5 1 HCn >> CCDO M 1SJ
p
X
p l "0 M oCO
?
X
P
h3 Hcn to CD
X
3 I O
tfl 0to0
A
i o 00CO33
5
F*
CO
3*
F*
00
r+ O
* Jf
Pw 4
a9 3<(30 aP 9a Pa 3<<3D aP iff
<a3
8&
i
OQ
<s(+ur CcD+ pa 9a?
atFr* ex
XFafc*f
%
o<
Pa a3!
<S
?
w3O*
<Q -3
<a
3 a<ru ? 4
<a8 Ba
a a ao* con
3 oo c ^ <<<903 O0! O CD O-3 <O
a33
33 33 33
44
a 8a Ba Ba
s
COD -a
p
SH*'
o?i
ff
cn
sr
05 0J 00 O* 0> sj ?????? MST
6 a
sas .
fill
pi ao
S' 8* O 3* I 3
3*-*a e\pbq
pa
Sa1 o 11?a
Pa
Pa
Pa
1*
** O'
33
o<
-51 33
oao
ooa
Pa Pa 9a 9a 9a 9a
P:
S*i'
o <a8 3a
o
0
*4
1
Cft
i 6 MOi U>
0007-SWP-000113883
SVfP House P aint White - Hex 471
0007-S W P -044514
V
Paint Reaeajpch August, 1948 -IT-
$ o Oc m c-1 P > Stf g 9 (D
3 B*
CD C ft
CoD> a "I 3a
> Pto
go I
fO
I
Pto
K h a
i
>4 tP* 3
f
S' P3> (9
S'
>4 X X X
** tCw 33 3
1 11 1
*
cm *
wz
a
aO
% ro c m CD 70
*2
i
p
rHf HO
CCDD
O
O
CD
0 CD
CCDn a P
> (X
> k_i
Ck
cn UP CD
TO
pHp
P
p <n CM CM
o CO CO CM CD CD CD CD
w
s CD
W p.
0
MJ 1
S'
cIn tosi <i.x
0aMI>1
JL
si
JaL
UtIot
P
kCO
c<IIn1
CD
ctn 0I4 cIn cIn
p
to
03k
a
k
CO
k
CD
a a a a a a
TSO'
oOo
a*
2 a
8
S>
2 Sa05 gao*.
i
8 a
8
O *pTJ
3p. Sp'
i
a &CPc9+*
m3 1
<<s
P CO CD PP P
3
y p v*
St *
-
cppn
wUp--M
P
P CLOJ H*
03 p
w
p p
3<*
. ci*
c* ft
4- 4* h - . 4-
M CD < P DO
t?
I 3 33 5
(D
*axt 2&
Ot PP>
S* Sf g* 333
2O5
S
P
pp
11
TpO
p
p-
I
SV) ? H 2Q5
S'iXcf* 5
Qz
20 2I0 TIO
?0 to M
TO to to
33 20 ro 20 X X X X X X
Ww
CaP cOn
PU
g
0o0 0c>n
8 C^3n cn
s o
CWM
4CUD
to
CM Cn =&? P
CD
M
P to
O<^3 _ol Qto
P pp
* r4
0007-SWP-000113884
Paint Research August, 1948 -16-
#97 - SWP 471 Institutional House Paint Survey Samples of SWP Gloss White were obtained from our various
plants for evaluation for general performance. The paints were checked for such properties as package condition, degree of settling, ease of stirring, odor, consistency, grind, weight per gallon, etc. The brush ing tests were run on beveled siding panels that had been primed pre viously with SWP 450 Undercoater. After application of the various house paints, the panels were inspected immediately for flow and sagging tendencies. All hiding determinations were made on contrast sheets. The white house paints were spread at 500 square feat to the gallon.
As indicated in the chart, all samples were found to be quite satisfactory in general and representative of standard production. How ever, there was a noticeable tendency to develop a small amount of firm to hard settling that broke up slightly lumpy. The Lawrence #55 Outside White was slightly slow in set-to-touch time, but was superior in bright ness to the other production samples. The Chicago, Cleveland and Newark samples were somewhat high in viscosity.
Chart follows.
0007-SWP-044515
-3-
Group 3. I'nsstisfeotory
306 Barytes (but dirt and rsde not
566 Mineral 'Ihiting (ditto; also fair at
(^3)
Aluminum Flake
1246 Soapstone. (Very dirty color, aotual performance fair to goody.
1822 Tala Dust
(ditto)
(1) 2203 definitely poorer in durability at Coffeyville. Might oonsider for Group 2 (a) .
(2) Metronita BXXXX should be noted as showing up especially well at Florida, two years white only.
(3) 2500 definitely poor at CoffeyVille, both ftolor and durability.
(4) Atomite reversed, Coffeyville as against Chicago. IXirability OK, but color poor,
(5) Silica smoke doflnitely OK in all respects at Coffeyville, Might consider for Grorp 1.
(6) "R" York Limestone definitely hotter than Lsaemito at Coffeyville, Tends to bo dirty.
(7) "a " York Limestone, ditto, but slightly leas dirt tendency,
(B) 2077 entirely OK at Coffeyville, both appearance and durability.
(9) 213 definitely poor at Coffeyville in all respects, might consider for Group 3.
(10) 599 reversed at Coffeyville as against Chioago, appearance (including tints) not bad, but durability definitely poor,
(11) 1989 tint-retention and olean-up OK at Coffeyville, might oonsider for Group 1,
(12) 1194 definitely poor at Coffeyvilla, cheek and crack. Tint retention OK.
(13) S66 definitely batter rating than "Croup 3" at Coffeyvilla. Average or slightly better.
s KBH
J. 'T. Chapin Faint Reaearoh Dept.
0007-SWP-044516
0007-SWP-000113886
JUL 16 1948
If
Speoial Report on Extenders in House Faints Various Exposures from 7775 jJS to 10818 OS
July 8, 1948
Introduction
In the Report of Investigation* for December, 1946, Mr. Jagd pre sented a listing of all inerts -which we hare tested in SWF formulas on out door exposure, classifying them as satisfactory, partially satisfactory and unsatisfactory for SWF use. This account wag the result of a study under taken because of the shortage of extender pigments in view of the 194S empha sis on SWF produet ion.
It was daoidsd that this method of presentation of results woulif, in general, serve very well for the present report on these extender tests at approximtsly one additional year of exposure. However, certain details will have to be added In order to make this^ report serve the purpose of the usual progress reports on individual series of panels,
Rather than considering all extenders which ws have ever tested, this report goes baok to about March, 1944; when a comprehensive teet ser ies set the pattern for many subaequent tests. In general, these series are tested on beveled oedar siding, 2-ooat work, with Sx 460 Underooeter tinted gray under the whites and white under the tints, to emphasise ero sion. The panels are exposed at Chicago, north and aouth vertioal. Prac tically all series oone 1st of two parallel sets of paints, ons on the pre war vehicle basis and the other bodied oil. Most series o ontain SWF Close White, Colonial fellow and Slats formulae, with the various extenders sub stituted for the usual magnesium silicate on a volume baais unless otherwise
speolfiad. It is now recognised that this is not as reliable as substitution
op equal binder requirements. 17 months is the minimum exposure time (two summers); 46 months the maxima* to data. All panels oontimne on exposure.
Most of the tests are exposed also at Coffeyvllle, vertical aouth, and same at Florida. Whenever the reiulta agree with those at Chieago, no particular oassMot is mads. Thus, two assumptions nay b made by those who scan the classification lists belowt
1. The Chloage testa are considered baa la (because both north and aouth exposures are available, and beeauee we heve actually watohed the progress of these panels).
2. All items listed without footnote or spools 1 ooasaent are "doubly sure", beoause they are baeed on oonourring results from two looations.
It should be emphasised that erosion is the type of failure usually predosiinant at Chieago, while oheoklng and pranking are much more character istic of Coffeyvllle and Florida.
Wo regret having to complicate the listing by adding footnotes and
comments, but this Is snide Imperative by the wide variety in exposure condi
tions, eto . This also helps greatly in making this serve the purpose of the usual progress report for our laboratory use.
O'
v ?>
V*
0007-SWP-044517
0007-SWP-000113887
JUL a 1948
j>2^ /w*--'fr3WR
5
Inspection Trip' Exposures - National Lead Company
Titanium Pigment Corporation du Pont Pigment Division June 7, 8, 9, 1948
General Statement
On June 7, 8 and 9 Mr. E. W. Fasig and the writer again reviewed the various panel and/or house tests of the National Lead Company (basic silicate white lead exposures only) and the Titanium Pigment Corporation atSayville, Long Island, and the dtt Pont Pigment Division at Wilmington, Delaware. In general, no outstanding new ^developments were observed. A considerable portion of the inspections consisted of review of progress of exposures which had been checked over previous years. For this reason, details will be omitted in some cases where reference to earlier reports will give necessary background data.
Certain general statements may be made:
1. There still are no indications of any new white pigments in the paint field or of any unusual methods of formulation not already under ob servation in our own exposures.
2. Each year the preference for the bodied oil type of house paint formu lation becomes established more definitely, although some differences in opinion may appear ae to the proportion and degree of polymerisa tion of the bodied oil content. General better clean-up and greater mildew resistance of bodied oil formulas are definitely established.
Current moves by some manufacturers from 3.75 to 4.25 pounds of oil per gallon seem to arise from a desire to meet our gloss rather than any deficiencies in durability.
3. The tendency of rutile titanium pigments, especially the most free chalking types such as R-2CO or RA-10 MO, to show a yellowish dis coloration in a white chalking paint is now recognised generally, aid their use in white house paints is not recommended. The yellow ing is more evident on paints with calcium carbonate extenders than with magnesium silicate, and is aggravated on 45 south exposures. It is claimed that rutile calcium pigments such as RC HT do not show this yellow discoloration.
4. Rutile titanium calcium pigments of the more free chalking type such as Titanox RC HT still show more dirt collection than would be desir able for a white house paint. Tho use of some anatase pigment improves the situation but does not entirely correct it.5
5. Titanium Pigment Corporation has withdrawn any previous recommenda tions for low p.v.c. house paints which contain no extender, and in which the vehicle is neutralized with sodium hydroxide. Such paints eventually show slit cranking and tendencies to peel. They gti.11 are considering low p.v.c. paints which contain some extender, with at least a portion of the vehicle MgO - CaO neutralized bodied oil.
0007-SWP-044519
0007-SWP-000113888
-2-
6 . Robertson, of Titanium Pigment Corporation, favors higher titanium oxide contents, up to 20$, and prefers slower chalking Titanox AA or mininuB blends of Titanox A with AA commensurate with ideas of clean-up required. Low basic carbonate white lead contents should be used, as high carbonate contents tend to keep the paint plastic and increase dirt collection. One objection which may be raised against high TiOz paints is that high opacity may encourage the painter to brush out the paint top far and reduce the durability through application of too thin films.
7. du Pont still does not recommend icalcium carbonate extenders fop white paints. For tints the dry =grcund R. E. Carroll York 'ihit* is preferred, and usually replaces other extenders at equal oil ' demands, although alternate approaches are under test.
8. du Pont's teBts on the use of chalk resisting titanium oxides in priming coats are very interesting and should be watched carefully. A move towards more chalk resistant Ti03, specifically R-610 or RA NC, would seem indicated when the supply situation permits.
National Lead Company - Savvilla. Long Island. Mew York
Only the exposures involving basic silicate white lead were examined on this trip. Panels exposed south vertical for five years, three coats self-primed on cedar show 100$ basic silicate white lead in oil as having a trifle less cheeking than the conventional basic carbonate white lead in oil. Both are gray in cast and have not cleaned up. In mixed pigment paints exposed for the same period, a 55$ basic carbonate white lead, 15$ Titanox A, 0$ zinc oxide and 10$ magnesium silicate paint is dean but checked. When basic silicate replaces basic carbonate at equal volume, leaving the other poundages the same, the silicate paint shows a trifle lees checking, but both are checked.
In the 100$ straight pigment paints exposed north the basic silicate paint (at equal pigment volume) is grayer than the carbonate, showing slightly slower chalking tendencies. This is also evident on similar points exposed for 1-1/2 years. There i3 considerable cracking and peeling of the mixed pigment paints on the north side of the fence after five years' exposure, definitely less with the basic silicate paint. However, the basic silicate paint looks deficient in hiding power and has more mildew than the carbonate paint. National now rates basic silicate white lead approximately equal in opacity to Old Dutch white lead, so that equal volume replacement results in some drop in hiding for the paints with basic silicate. Straight pigment paints after 2-1/2 years' exposure comparing basic carbonate white lead with lead sulfate (10 and 20$ PbO) and with basic silicate white lead favor the silicate. The sulfate paint shows more peeling and the 10$ PbO sample looks thin.
0007-SWP-044520
0007-SWP-000113889
-3-
Replacing basic carbonate white lead with basic silicate ip T.P.C.'s MW-401 exterior primer showed substantially equal performance after 2-1/2 years. Note these panels were painted around November and therefore have actually had two summers of weathering.
In TT-P-25 Paint: Exterior-Primer using 25$ basic carbonate and 25$ basic sulfate white lead,: the replacement fcy volume with bapic silicate of (a) the 3ulfate or (2) all the white lead did not affect thb performance up to 2-1/2 years-c.. In another series out 2i-l/2 years self-primed, a paint with 45$ leaded zinc, 20$ basic carbonate, 15$ Titanox A and 20$ magnesium silicate, basic silicate replacing the basic sulfate white lead and part of the zinc oxide and using XX 50 zinc oxide at 29.5$ p.v.c., is in good condition after 2-1/2 years. The same is true when additional silicate replaces the BCWL. If stare basic silicate is added up to equal cost there is a trifle more checking and peeling as if too much active pigment were present. This is more apparent an the north than on the south. National rates basic silicate approximately equal to basic carbonate in reactivity, and feels that at high lead contents the zinc oxide should be reduced to keep the film from becoming toq hard. National thinks the order would be something like 1$ zinc oxide for 2$ or 3$ basic carbonate or silicate white lead.
Basic silicate was used in a gray house paint with a control pigmentation of 45$ leaded zinc, 20$ basic carbonate white load, 10$ Titanox RA NC, 25$ magnesium silicate. Exposures have run 2-1/2 years to date. Replacements were (1) 45 X basic silicate for lead sulfate at equal volume, (2) for sulfate plus some zinc oxide, (5) for carbonate and sulfate plus same zinc oxide, and (4) additional 45 X to equal the original coat, displacing magnesium silicate. Tint retention drops off slightly where basic silicate is used and some cracking has developed on Group 2 and 4 woods. Other exposures after 1-1/2 years using replace ment methods (2) and (5) indicate that the total activity should be raised in the interests of tint retention, but this might also increase tendencies towards film failures due to excessive hardness.
In general, the National lead exposures are not well executed and frequently show rather unusual failures which detracts from confi dence in their results. The scope of tests covering use of basic sili cate in conventionally fomulated house paints is too limited to permit acceptance of their recomaandatloa3 for its use in large volume sales of house paints, without prolonged testing of our own.
0007-SWP-044521
0007-SWP-000113890
i.
-4-
Titanlum Pigment Corporation - Sayville, Long Island, Key York
(:a) Basic Silicate White Lead Series Titanium Pigment's exposures of basic silicate white lead include
Series 7953-60, exposed for almost three years. A typical 153 Ti02 (Titanox A.or RA-10 M0)/463 35/65 leaded zincA^ BCVJL/203 magnesium silicate formu lation was revised to include replacements by basic silicate for (1) basic sulfate white lead only, (2) basic carbonate only, (3) both sulfate and carbonate. The paints have the pre-war type binder with 293 p.v.c. There is less cracking when basic silicate replaces the sulfate, still better when the carbonate or both the carbonate and sulfate are replaced, '.fhen the control paint is used over Mtf-401 primer in which basic silicate re places BCWL, the paint does not seem to wear away quite as fast as over the regular MW-401,
f b) Decreasing Active Pigment Serins
The composition of this series has been briefed in previous re ports bat is repeated here because again there are definite developments. This series was started at Dr. Holley's suggestion that tests be made to see how much extender could be introduced before durability is affected seriously. The paints were first applied in 1941 and each year since, three coats self-primed on cedar and white pine. The compositions of the paints are as follows: Pigmentation
153 Titanox AA - 46.03 leaded zinc - 19.03 BOWL - 203 Asbestine (303 ZnO) 153 Titanox AA - 42.03leaded zinc - 17.53 BCWL - 25.53 Asbestine (7.53 ZnO) 15,3 Titanox AA - 58.53leaded zinc - 15.73 BCWL - 30,83 Asbestine (253 ZnO) 153 Titanox AA - 34.63leaded zinc - 14.73 BCWL - 35.73 Asbestine (22.53 ZnO) 153 Titanox AA - 30.83leaded zinc - 12.63 BCWL - 41.6$ Asbestine (203 ZnO) 103 Titanox AA - 50.83leaded zinc - 12.63 BCWL - 48.6,' Asbestine (203 ZnO) Vehicle
943 Refined linseed oil - 63 Za Bodied linseed oil. 653 WVM FVC - 293 This series, still in good condition after seven years, again
shows an advantage for lower zinc oxide content at high extender levels. (Mote conflict with National Lead theories.) The 253 zinc oxide paint is in the best condition, followed closely by that containing 22.53 zinc oxide. All show some cracking, starting with slight at 303 sine oxide, going through a minimum at 253, increasing again and accompanied 'ey erosion and checking at the highest extender levels. The last two paints become almost transparent in wet weather.
The same paints tinted show about the same sequence after seven years' exposure, with the last two at 203 zinc oxide content being inferior.
0007-SNP-044522
0007-SWP-000113891
-5-
Proprietary paints exposed for the same period include SVP and Lowe Brothers High Standard, both in good condition. Montgomery Ward's paint, which evidently had very good flow, is perhaps best, du Pout's "Ti-Sil" paint is eroded, checked and cracked.
The same series exposed in 1944 and now four years old, com pares IS# Titanox A with AA, and always favor AA. This is consistent with all experience showing durability improving as the chalking of the
TiOj is retarded. All the paints except the 152 Titanox AA paints at 22.52 and 202 zinc oxide show some cracking, with erosion developing at the high extender levels. There is as much erosion on the north vertical exposures as on the south.
A similar series, exposed in 1946, repeats the same compositions but varies the titanium oxide as follows: (1) 202 Titanox A 168, (2) 152 Titanox A, (3) 152 Titanox RA 10, and (4) 102 Titanox RA 10 and 52 Titanox A 152 Titanox RA 10 develops some yellow cast and collects some dirt, both of which are reduced by the use of 52 Titanox A. The last combination used in a paint of 332 p.v.c. with 4.26 pounds oil of which 252 is bodied oil pro duces a smoother film and is a trifle cleaner than the high oil formula.
(c) Grades of "Titanox" Pigments
This is a new series put out. in 1947, three coats self-primed on cedar and white pine. The fundamental pigmentation is 152 TiOa 462 leaded zinc - 192 BOWL - 202 magnesium silicate at 292 p.v.c. in the full oil vehicle. The titanium oxides are respectively (1) A 24, (2) AA, (3) A 168, (4) A regular, (5) RA NC, (6) RA 25, (7) RA and (8) RA 10. Titanox A is cleanest both south and north. Of the remaining anatase oxides, the older of increasing grayness is A 168, AA and A 24. RA 10 i3 the cleanest of the rutile oxides, not equal to A regular, followed by RA, HA 25, with RA NC showing most dirt collection.
(d) Rutile Calcium Palnt3
This group of exposures, also described previously, includes a series pit out in June, 1943, 3 coats self-primed on cedar and whito pine. The pigmentations include:
(1) 502 leaded zinc - 502 Titanox RC
(2) II
TV II - 252
"
- 252 Titanox RC HT
(3)
- 12.52 "
- 37.52 "
(4) - 502 Titanox RC HT
(S) - 352 Titanox RC - 52 Titanox A 168 -
102 magnesium silicate
(5) . while (4) with
others in the |group. These are all 1
All show some erosion and (2) and (3) some cracking.
0007-SWP-044523
0007-SWP-0001
In 1946, a scries was exposed using the following pigmentation patterns:
(1) 505b leaded sine - 50* titanium calcium (2) 40',' leaded zinc - 50/5 titanium calcium - 10* magnesium silicato (3) 40% leaded zinc - 40* titanium calcium - 20% magnesium silicato (4) 25% zinc oxide - 50* titanium calcium - 2555 magnesium silicato
The titanium calcium pigaent was varied as follows:
A. 50/50 Titanox RE/ RC HT B. 100* Titanox RC HT C. 50/50 Titanox RC HT/Anatase Titanium Calcium
The nC" paints are always cleanest. All are quite good south vertical, bit the "A" and "B" types show spotty clean-up on north exposure. Pigmentations (1)C and (2)C are preferred.
(e) Tint Base Paints
A series of gray tints put out in 1947, three coats self-primed, on cedar and whits pine, is reported for future reference. The pigmenta tions are:
(1) 4055 Titanox HC - 30* leaded zinc - 30* magnesium silicato
(2) 50*
"
- 35* zinc oxide - 15* "
"
(3) 40*
- 30*
- 30* "
"
(4) 40*
"
- 35*
" - 25* "
"
(5) 50*
"
- 40* leaded zinc - 10* calcium carbonate
(6) 50*
"
- 40* "
" - 10* calcium sulfate
(?) 40*
(8) 40*
" "
~ 30* zinc oxide - 30* calcium carbonate
- 30* " "
30* calcium sulfate
The paints are ground with the full oil vehicle, 85* H.V.K. and 29* p.v.c.
After one year's exposure the magnesium silicate paints show slight streaking, the calcium sulfate and carbonate paints having slightly
better tint retention, with the sulfate paints shewing slightly more streaking.
(f) High Pigment Volume Paints
This scries, also put out in June, 1947, is also described in detail for future reference. The paints were formulated as follows:
0007-SWP-044524
0007-SWP-000113893
-7-
(l) 35? loaded cine - 35? Titanox RC HT - 30? magnesium silicate
Vehicle: 75? refined linseed oil - 25? Zs bodied linseed oil
77? N.V.M.
33? P.V.C.
(2) 35? leaded sine - 35? Titanox RC HT - 30? Natural Whiting
40? p.v.e.
(3) 33? Tl
" - 12? Titanox A
- 55? "
It
40? p.v.e.
(4) 35? (1
" - 35? Titanox $C HT - 30? '
n
45? p.v.e.
(5) 33? (I
11 - 12? Titanox A
- 55? "
n
45? p.v.e.
Vehicle: 50? refined linseed oil - 30? Z+ bodied linseed oil
0? Magnesia oil.
65$ rf.V.M.
On south exposure, (1) shows some dirt, (2) is smoother but shows dirt collection, (3) is cleaner, (4) shows a trifle less dirt collection than (2), and (5) is the cleanest of the carbonate painta. On the north (2) is definitely dirty. (3) is cleaner and brighter, (4) shows streaky dirt collection, and (5) is cleaner with slight streaking.
(e) low Pigment Volume Paints
A new series of low p.v.e. paints was put out in 1947, one finish coat over MU-401 primer, on cedar and yellow pine. The pigmentations are:
(1) EX-5121. 30? Titanox A - 20? zinc oxide - 50? BCWL - 20? Titanox RC HT
(2) EX-5051. 35? It - 20? " - 35? rr - 10? magnesium sil.
(3) EX-5052. 40? tl - 2 " " - 30? 1! - 10? "
"
(4) EX-5053. 50? II - 20? " - 20? If - 10? i:
"
The vehicle is:
45? Alkali Refined Linseed Oil
30? Calcicoater Vehicle
25? Magnesia Oil
55? N.V.M.
21? P.V.C.
0007-SWP-044525
0007-SWP-000113894
-8-
The use of inert is a change from earlier formulations. It retards the slightly excessive flow of previous low p.v.c. paints and is intended to reduce tendencies towards slit cracking. On 45 exposure low p.v.c. paints with no inerts, such as EX-4208 and 4508, described in previous reports, show severe cracking, much worse in the former.
It is obvious that low p.v.c. paints have not shown up well so., far. However, at one year, the above paints are very smooth and clean both south and north, and will be Watched closely.
(h) Lead Free Paints
This series was put out in 1943, three coats self-primed, on cedar and white pine. The pigmentations include:
(1) 37.5# Titanox HC HT - 37.5# Titanox RC - 25# ZZZ-33 zinc oxide.
(2) 75# Titanox RC HT - 25% ZZZ-33 sine oxide.
(3) 25# Titanox RC HT - 25# Titanox RC - 25# ZZZ-33 sine oxide 25% magnesium silicate.
(4) 50# Titanox RC HT - 25# ZZZ-33 - 25# magnesium silicate
The paints are all formulated at 9# p.v.c. with the full oil vehicle, (l) shows some slit cracking and some mildew, (2) some mildew and erosion, with (3) and (4) similar to (2). (2) is interesting, as the pigmentation is similar to Devos's new one coat house paint.
Robertson warns that lead-free paints are vulnerable in atmos pheres containing S021 whore dampness will leach out the paints, cause bad washing and transparency.
In a series put out in 1946 some 4.25 pounds of oil per gallon paints at 33# p.v.c. are compared with full oil lead-free paints at 29# p.v.c. The paints are applied one coat over MU-401 primer. The pigmenta tions are;
(1) 15# Titanox A - 30# zinc oxide - 55# magnesium silicate.
(2) 15# " - 30# "
- 55# "
'
29# p.v.c. 33#
(3) 50# Titanox RC HT - 5# Titanox A - $0# zinc oxide - . 15# magnesium silicate.
(4) 50# Titanox RC HT - 5# Titanox A - 30# zinc oxide 15# magnesium silicate.
29# " 33# 11
All are in good condition at this point, except for cracking of paint (1) on one bad board.
I i
0007-SWP-044526
0007-SWP-000113895
# im**
-9-
(i) Washing Tests This series was started in,June, 1947, three coats self-primed
or. cedar, to chock the washing tendencies of various white house paints. This characteristic is checked by running a beveled siding painted black under each white paint. The formulation of each paint and its current washing status is as follows: (1) 100? Basic Carbonate White Lead, in regular vehicle.
Very slight washing. (2) "Ti-Sil," 50? leaded zinc - 50? Ti-Sil, in regular vehicle.
Definite washing. (3) IS? Titanox A - 38.5? leaded zinc - 15.7? BCVJL - 30.8? magnesitpn
silicate, in regular vehicle. Definite washing. (4) Pigment as (3) but 33? p.v.c. Definite washing. (5) 20? Titanox AA - 38.5? leaded zinc - 15.7? BCWL - 25.8? magnesium
silicate, in regular vehicle. Very little washing. (6) 30? Titanox A - 30? zinc oxide - 40? BCWL at 21? p.v.c.
Definite washing. (7) 15? Titanox A - 35? zinc oxide - 50? magnesium silicate, in
regular vehicle. Slightly loss washing than (6). (8) 15? Titanox AA - 35? zinc oxide - 50? magnesium silicate,
at 33? p.v.c. Very slight washing. (9) 50? Titanox RC HT - 40? leaded sine - 10? magnesium silicate,
in regular vehicle. Very slight washing, - has adherent chalk. (10) 25? Titanox RC HT - 25? anatase titanium calcium - 40? leaded zinc -
10? magnesium silicate, in regular vehicle. Slight washing.11 12 (11) 50? Titanox RC HT - 25? zinc oxide - 25? magnesium silicate,
in regular vehicle. Very slight washing. (12) SUP doss White - oil conservation vehicle. Definite washing.
(i) Sherwin-Williams Cooperative Te3t3 This series has now been on exposure for two years, and repre
sents both S-W and T.P.C. paints which wero exchanged for cooperative exposure at Sayville and Chicago. This is a very complicated scries and will be handled in a separate report at such time as worth while results develop.
0007-SWP-044527
0007-SWP-000113896
3
-10-
At the present time the paints at Sayville with regular per centages of Titanox A are the cleanest^and brightest, both south and north. The rutile titanium oxide paints show their characteristic yellow cast, but this is reduced although not eliminated when a 50/50 blend of RA 10 and Titanox A Is used. When titanium calcium pigments are used, the paints become whiter and cleaner as they progress from Titanox RC HT through blends to anatase titanium calcium.
In the tints, the S-W tints are cleaner than the T.P.C. tints. Micro Velva substituted for magnesium silicate shows little difference except for less mildew.
du Pont Pigment Division - Wilmington. Delaware Before the actual inspection of panels, a discussion was held
on du Pont's proposed house paint exposure program. The original "Ti-Sil" formula will be exposed at 4.89, 3.75 and 4.25 pounds of oil per gallon. The 4.25 pound formula is added to anticipate interest in such, paints in the future, and not because of any lack of quality in the 3.75 pound "bodied oil" paints. The formilas are repeated using both Krebs' Drier and naphthenate driers. The latter usually require the addition of a puff ing agent such as Syntex RL-80.
These paints are then repeated using folk Whiting at equal oil demands. Another group involves similar treatment of a lead-free pigmenta tion, 19.5$ Ti-Pure FT - 42.3$ acicular sine oxide (ZZ3-33 or XX-601) 38.2$ magnesium silicate. Lead-free paints are more susceptible to drying troubles. Another formula, 10.4$ Ti-Pure FT - 10.4$ Ti-Pure Y-CR - 49.2$ leaded zinc - 30$ magnesium silicate, shows an attempt to control chalking at high Ti02 levels by using some of the slower chalking Y-CR. The basic tint formula is 12.5$ Ti-Pure R-610 - 45$ leaded zinc - 42.5$ magnesium silicate, to which is added a lead-free tint base, 11.2$ Ti-Pure R-610 26.4$ acicular zinc oxide - 62.4$ calcium carbonate. Most of these involve the drier variations and extender replacements described in the first set. We propose to cover these and additional ideas during this summer's expo sure work,
(a) Ti-Pure FT in White House Paints - Cleaning
The basic pigmentations in this series compare 10$ Ti02/45$ leaded zinc/22.5$ BCWL/22.5$ magnesium silicate with the typical "Ti-Sil" formula, 15$ Ti02/50$ leaded zinc/35$ magnesium silicate. In each group the Ti0a used is successively FT, R-20G, Y-CR and R-110. The exposures were made in both the pre-war vehicle, 92$/8$ alkali refined linseed/Q bodied linseed, and the bodied oil type. Those put out in 1943 carried 50$ of Z* bodied linseed but those put out in '44 and '45 and '46 carry 50$ of X bodied linseed to improve brushing. Exposures are both south and north vertical.
0007-SWP-044528
0007-SWP-000113897
-11-
Ths groups pat out in 1943, 1945 and 1947 were inspected to get the picture after 1, 3 and 5 years' exposure. Ti-Pure FF showed bettor self-cleaning properties than R-200,'Y-CR or P.-110, the differences being more definite in the 22.5? BCVIL thani in the "Ti-Sil" formulas. The latter were always cleaner, showing the greatest advantage during exposures from 7 to 15 months. The current bodied oil fonaulas showed a definite advant age in clean-up. Ti-Pure Y-CR or Titanox AA show maximum dirt retention at two years. Ti-Pure Y-CR and R-110 show more mildew, especially where
rvq-BCWL is used, and the bodied oil paints show much greater mildew re sistance than the pre-war fall oil paints. Calcium carbonate accentuates yellowing of rutile T102 paints but reduces mildew compared with magnesium silicate. This is further emphasized in another series out four years. In this group Titanox RC HT and RC show had dirt collection and mildew.
In a seri3 exposed in 1945, R-200 and RA-10 MO are compared at 12.5? versus Ti-Pure FF and Y-CR at 15? in the "Ti-Sil1' paint. In the oil rich paints, FT makes the only really white paint at two years' exposure, RA-10 MO, R-200 and Y-CR show bad dirt on north exposures, with the last named worst. Again the bodied oil paints are much cleaner, du Pont now do not recommend the use of any rutile titanium oxides in white finish coat house paints.
(b) Lead Free House Paints - Whites - Cleaning
The first of two groups examined was put out in 1945, and include the following pigmentations exposed in the full oil vehicle at 28.5? p.v.c.:
15? Ti-Pure FF - 50? leaded zinc
- 35? magnesium silicate
16.5?
" - 35.7? acicular zinc oxide - 47.8? "
"
18.1?
"
- 39.4? "
" " - 42.5?
"
"
18?
- 36? " " " - 46?
"
11
The second group was prut out in August, 1947 and therefore now represents almost one year of exposure. The pigmentations and vehicles include:
? P.V.C.
Oil Rich Oil Restricted
15? Ti-Pure FF - 50? leaded zinc - 35? magnesium silicate 28.5
34.9
17.2? "
- 37.3? acicular zinc oxide 45.5? magnesium silicate
27.4
35.5
The lead-free zinc oxide formulations are superior to the leaded zinc oxide paints in cleaning characteristics. The one year old exposures actually look good both south and north. It ahould be noted that lead-free zinc oxides of the acicular type have higher oil demands than co-fumed leaded zinc oxides. Therefore, the lead-free paints were formulated at slightly lower p.v.c. to maintain approximately equivalent free binder relationships.
0007-SWP-044529
0007-SWP-000113898
-12-
(c) Calcium Carbonate Extenders in House Paints This series has been covered in detail in previous reports (see
page 5, 1946 report and page 6, 1947 report), and the fundamental conclu sions remain the same now after six years' exposure.
1. Ground limestone (York White) gives the best durability of the calcium carbonate samples tested, but is inferior to magne sium silicate.
2. Calcium soaps lead to poor durability and should be eliminated as far as possible. Low oil absorption, low reactivity, natural calcium carbonates are preferred. Precipitated car bonates are inferior in durability.
5. Mica (10$) can be used to correct checking and cracking tendencies introduced by calcium carbonate.
4. Durability differences are much wider in whites than in tints. 5. Calcium carbonate is more resistant to mildew than
magnesium silicate. As incidental remarks it may be added that diatomaceoua silica
looks very good among the other extenders tested, also Eastern Magnesia's 500 Talc. It should be recalled that this series, started in 1942, covered a replacement of magnesium silicate at equal volume in the pre-war vehicle, at 20.5$ p.v.c.
Substitution of calcium carbonate for magnesium silicate at equal oil demands is preferred. Special methods of substitution discussed on page 14 of the 1945 report and page 6 of the 1946 report show no mildew on calcium carbonate at equal oil demands for magnesium silicate, but mil dew at equal volume replacement. In general, extenders should be compared with equal free binder. The preferred method is to control consistency by adjusting extender against total vehicle.
Calcium carbonate paints with high zinc oxide contents show dirt collection on whites. Tint retention in grays is definitely better with carbonate extenders, tut should be watched as dirt retention also increases. Terra Alba is slightly superior to magnesium silicate in tint retention but shows tendencies to collect dirt and mildew.
0007-SWP-044530
0007-SWP-000113899
rjo-
(d) Two Coat Systems - Durability
This series is becoming ijore interesting as time progresses and some details from earlier reports are repeated here for clarity. The paints were exposed in August, 194$, using the "Ti-Sil" 15% Ti-Pure FF 50% leaded sine - 55% magnesium si|icate pigmentation as the basic pattern. Tha paints were applied as three and two coat solf-primed systoms and over four commercial primers as well as-a tint base paint, 12.5% Ti-Pure R-610 45? leaded zinc - 42.5% magnesium pilicate.
( Tha two coat systems in general are not as durable as the three coat systems. When the "Ti-Sll" too coat is used over the special i^-610 primer, this two coat system almost equals three coats of "Ti-Sll" seifprimed. Again this is interesting and is being covered in our own set of exposures. It is claimed that when the primer coat carrying R-610 is exposed duo to erosion of the top coat, there is no tendency for the chalk to take on the rutile yellow cast. R-200 should be avoided in undercoats for this reason. (Note: Rex 450 should be revised to eliminate 2173 or 2269 and to U30 2229 or 2174 when stocks permit.)
(e) One Coat House Paints
du Pont feel that the exposures since 1945 of a 25% Ti-Pure FF 50% leaded zinc - 25% magnesium silicate paint offer considerable promise as a one coat house paint. The preferred formula la that in the bodied oil vehicle at 35% p.v.c. This paint carries 2.22 pounds TiOg per gallon end was spread at 450 square feet per gallon. The principal trouble in one coat application is flashing and the problem of applying uniform film thick ness in one coat. Durability, of course, is controlled to a large extent by film thickness.
If such a one coat paint were used as a primer on new wood, it was suggested that oil be added rather than thinner, as the lower p.v.c.'s look better on bare wood.
(f) Special Oils
This heading includes a number of different series in which special oils were used, and which were placed on exposure from 1944 through 1947. Vithout going into detail, in ''Ti-Sil'' ap similar paints Drisoy A, ASV #4 and Ardol show up well for the two years the tests have run so far. A de hydrated castor oil paint at 35% p.v.c. is showing objectionable cracking failure. Ve found that using Dahydrol as the bodied oil portion of the SWP vehicle, or 40% of the binder, durability was satisfactory but there is a tendency towards loss of gloss due to surface wrinkling if too much conjugated oil is used.
Low p.v.c. paints following Titanium Pigment's pattern show early film failure where sodium hydroxide and lime neutralized oils were used.
i
S 0007-SWP-044531
j i
\
0007-SWP-000113900
-14-
Some special comments should be added. The Department of Agri culture's conjugated soybean oil used 100$ as the paint binder was very poor. The Conjulin oils were not too good. Zinc-free paints with con jugated oils show erosion. Special ldad and zinc-frco paints look gpod with some conjugated oils. For exampl, 100$ ADM copolymer oils shoy checking failure with conventional pigmentations twt none in the lead and zinc-free types. Such a pigmentation would be 1.8 pounds Ti-Pure F7 to 3|5$ p.v.c. with magnesium silicate or 50/50 magnesium ailicate/Miporalite.
Unbodied Kelvitol gives a thin film, Xelvitol bodied to Z and to Zj gives much more durable paints. Linogel gives thin films on exposure. In general bodied oils cut-perfora parallel unbodied oils. P.E. soys oils look promising.
(g) Porch Paints
du Pont put out an extensive new series of porch paints in Feb ruary of this year, on the 45 fence and also on a board walk at the Newport laboratory. Ti-Pure H-610 is used alone and with various cxr tenders in a very wide variety of vehicles, and these are compared with a number of commercial porch paints.
The tests will be watched carefully and details discussed when significant results appear. At the moment it appears that best gloss is pbtained when all extender is omitted. Surfex is holpful in giving uni form gloss in one coat. Vinyl coatings are already cracking on the wood.
Soya lecithin used as 1$ by weight of the pigment and included in the grind gave marked Improvement in suspension characteristics as tested in several vehicles. In several instances the soya lecithin was effective as an anti-flooding agent. Alkyd vehicles are generally superior in gloss and tint retention.
fh) House Tests
Some of the house tests examined have been described in previous reports which may be consulted for further detail.
1. du Pont Mouse. Wilmington, Delaware.
The test paints on this house were discussed in detail in the 1946 report. The conventional "Ti-Sil1* pigmentation is the cleanest and brightest, better in the bodied oil vehicle than in the pre-war high oil binder. When calcium carbonate replaces the magnesium silicate and total vehicle to equal consistency, there is more dirt collection. Whon terra alba is used in the same maimer, the paint shows the least chalking of the group and shows bad streaking under Idle windows. A paint pigmented with 17.Ti-Puro FF - 44$ acicular ZZZ - if35 zinc oxide - 58.5$ calcium car bonate in OKO M 2-1/2 linseed oil at 40$ p.v.c. shows streaked dirt col lection not as bad as the terra alba paint.
When R-200 Ti02 is used instead of FF there is a distinct yellow discoloration but this is not as definite as during our 1947 inspection.
0007-SWP-044532
0007-SWP-000113901
-15-
2. Tarring House. Newark, Delaware.
This house ooapares the conventional nTi-Sil" pro-war paint with a special, 40? Ti-Cal R 25 - 50? leaded zinc - 1C? magnesium silicate. The-house was painted in June, 1946. There is a definite difference in dirt collection, the FF paint being superior to the R 25 paint, and the latter is more yellow in cast.
3. Wood House. Newark, Delaware.
This house, painted in August, 1946, compares the "Ti-Sil" pigmentation in a 3.75 pound oil vehicle (50? alkali refined linseed, 50? X viscosity bodied linseed), with a lead-free 18.1? Ti-Pure FF -r 39.4? ZZZ-33 zinc oxide - 42.5? magnesium silicate pigmentation in the full oil formula at 28.5? p.v.c., and the conventional "Ti-Sil11 formula (full oil vehicle). The "Ti-Sil" bodied oil formula is tho cleanest, not equalled by the "Ti-Sil" conventional formula or the load-froe paint with full oil.
As usual, the National Lead Company, the Titanium Pigment Corporation and tho du Pont Pigment Division extended us every courtesy and assistance to make our inspection trip enjoyable and instructive.
MVL:AR
M. VAN LOO Director of Paint Research
i
!
I 0007-SWP-044533
i
0007-SWP-000113902
To tho Technical Information Mailing Ustr
July 8, 1948
Mr. Chapin's spaoifti report of the current statue of
exposures of various extenders in house paints is being distributed to the Technical Information Ifeiling list because of potential gen eral interest, ifeny of tho exposure# have attained sufficient length of exposure so that replacements can be made, when necessary, with a
considerable degree of reliability. Further reports will follow ae other extenders show final results.
u. ria l o o
O' C<-' V^ *
JUL 1 6 1948
0007-SWP-044534
0007-SWP-000113903
Paint Research July, 194B
-24-
#97 - Cont.
study of Chicago ratings discloses no trends from the normal in dirt. Only one paint is in any way unusual: (1273) - "bis" bodied (1273) shows a peculiar chocking at Florida and rather heavy dirt at Chicago up to one year, but cleaning up rather suddenly to as good a rating as the others.
. A teat was completed at 12427 S. Stewart Avenue, Chicago, on
a house which had been painted as a teat job in July, 1944. The house
was in good condition, except for areas on the front and rear porches
where trouble with blistering had always been encountered. These area3
were burned off, and the rest of the house thoroughly scraped, cleaned
with steel wool and spot-primod where necessary. Regular Rex 450 Under-
coater, C 1488 B, was used as primer over all. Areas on the east, south
and north sides were top-coated with RB-2350, testing 4.25 pounds of oil
per gallon as against the regular Rex 471, C 1668 (supervised factory
batch), U3ing 3.75 pounds of oil, which was applied on the balance of
the house. The painters, both semi-skilled, favored the RB-2350 as
3lightly easier brushing. There is no difference in whiteness, and gen
eral appearance is good throughout, but the special does show a slightly
higher gloss.
Spreading rates were estimated on the basis of entire amounts
of each paint used, and ran rather low, but uniform: 463 sq. ft. per
gallon for Rex 450, 470 for Rex 471 and 479 for RB-2350.
Porch and Floor Paints
Panels 12792 - 801 C and F and were prepared for exposure during
the month. These coaparo various Porch- and Floor enamels based on the regular vehicles, (6173) and (4950)G, AV 170 and (2841)G, and specials including an alkyd combination of (4100) and (4103), also 15 and 18 gal lon length "A resin" varnishes based on various oils. They will be ex posed 45 south at Chicago and Miami .
0007-SWP-044535
0007-SWP-000113904
Paint Research July, 1948
-23-
#97 - Coat.
Exposures 9246-75 C, ? were examined after approximately three years' vertical south exposure at Chicago and Florida. The testa cover Pittsburgh's Selected Soya Oil CW (2035) in both Rex 471 SVP Gloss White and Rex 375 Colonial Yellow. The coverage is veiy complete, as both
pro-war and bodied oil type formulas arc used, and the soybean oil is substituted for linseed (2), for (48) and for all the oil, the CW (2035) having been kettle-bodied for this purpose. Further, the same sort of substitutions are tested in Rex 450 Undercoatcr, so that some soybean oil appears in both coats. The variations are all minor, and general per formance of the soybean oil is good. One consistent trend, though slight, is that of greater dirt due to the soya} this shows up more in the cases where both coats contain the CW (2035). Erosion at Chicago is quite noticeable but there seems to be no trend due to the special oil. In some cases, there may bo slightly greater fading duo to the soya.
Exposures 10416-35 F, 0 were examined after approximately two years at Florida, vertical south, and Chicago, north and south. All are cedar beveled siding, primed with Rex 450 Undercoater tinted gray to emphasize erosion. Details of oil replacements are too complex to present hero. Basically, both (48) and all oil are replaced in Rex 471 SWF Gloss White of 10-4-43 (bodied oil type, 50/50 rutile/anatase TiOg). The oils involved are:
Pittsburgh's #200 linseed, as 13, regular bodied and "bis" bodied.+
Pittsburgh's CW (2035) linseed, as is, regular bodied and "bis" bodied.**
Linseed, S-V batches, linseed, as is, regular bodied and "bis" bodied.
(1273) soya, regular and "Ms" bodied.
Cook's raw and bodied soya (separately and together, but not with other special oils).
(3017) light Dahydrol, part and full replacement.
(2325) heavy DeJydrol, for (48).
*3elected Linseed
**Solected Soya
There is voiy little choice as to durability and not much more as to general appearance at any of the three locations, and the general acceptability of treated and selected soybean oils is indicated throughout. A study of all available past readings shows that all Florida panels rating appreciable dirt in early stages contained soybean oils, but also other
soybean oils wore clean, and not all non-soya types were clean. A similar
0007-SWP-044536
0007-SWP-000113905
Paint Research July, 1948
-22-
#97 - SWP 471
Paints were prepared for exposure to study the behavior of [ tyvoil 2, soybean oil molecularly distilled and stripped of its sterols, carotenoids and other non-glycerides by Distillation Products Company. The Hjrvoil was used to prepare (3316) and (48) (50/30/20 version). The paints arc regular SWP Gloss White formulations except that the (48) por tion is successively all linseed, RB 8557 50/30/2P linseed/(12?3)/CW0, RB 8553 50/30/20 linseed/liyvoil/CWO, (3316) regular and CTV 5007 80/20 (1273)/CWD, CTV 5008 80/20 Hyvoil/CWO. Two additional bodied oils were included; RB 8936 90A0 (1273)/CVO and RB 8937 75/25 (1273)/(2325).
Panels 12914-29 CS, CN and F were prepared for exposure during the month. The paints are a repeat of an earlier study of the uso of bodied soybean oils in SWP. The oils are used for the bodied oil portion of the binder and were supplied at Za-Z3 bodies by Resin Research under
the following designations:
New No.
Old No.
Description
RB 8474
CV 7027
"Bis" bodied soybean oil
8471
7028
S0a bodied soybean oil
8472
7029 Catalyst bodied soybean oil
8473
CTV 584
80/20 (1273)/(140) bodied oils
8477
570 PPG S0 600 soybean bodied
Earlier tests along this line were painted out during winter months at relatively low temperatures, and especially in tints showed a tendency to hold dirt compared to all linseed paintst The new paints,
whites and Geneva Cream tints and including linseed paints, were applied under favorable drying conditions at this time, and will be repeated in the fall at temperatures in the viciniiy of 50 F. Exposures will be south and north vortical at Chicago and south vortical in Florida.
Panels 12802-65 CS, CN and F were prepared for exposure during the month. The paints represent alkyd type house paints made from vehicles submitted ly Rosin Research. They wore appliod self-primod, over Rex 450 SWP Undorcoater and as repaints over weathered SWP. (4106) gave a paint which had slightly sticky brushing while the other ejoerimental alkyds all produced definitely sticky brushing. The repuinc, panels
will be exposed south vortical in Chicago only, the others south and north vertical at Chicago and south vortical in Florida.
0007-SWB-044537
0007-SWP-000113906
Paint Re search June, 1948
-26-
#97 - Cont.
A house test was conplfted at 10508 S. Christiana Street using basic silicate (National's 45 X);.plus 414 leaded zinc for the lead and zinc content of Rex 471. The zinc oxide was replaced on an equal yeight basis while the lead substitutions were on a volume basis. The finished job looks excellent although the:silicate-414 paint has a yellowish cast compared to regular Rex 471.
Warn storage tests have been in progress for approximately one year to check the granulation tendencies of Octoate, Hexogen, Karhthenate, X-507 and D-121 lead driers in pre-war and bodied oil SWP formulations. The driers as listed were Introduced on an equal metal basis, equivalent to the lead content of each formulation.
1. Lead Octoate (24% metal) Frederick A. Straaen-Reuter, Inc.
2. Lead Compound x-570 (28% metal) (Non-naphthenic; made with vegetable oil acids) Nuodex Products Co.
3. Lead Hexogen (24% metal) Advance Solvent and Chemical Co.
4. Lead Napbthecate (10% metal) Stock sample (4250)
5.. Nuodex Compound D-121 (24% metal)
Batch
Formula
Condition of SWP Samples
Granulation at
Lead Drier Psed
5 Months 10-1/2 Months
QJ 137 L 0J 135 L 0J 134 L OJ 135 L OJ 182 L OJ 136 L OJ 100 L 0J 102 L 0J 101 L 0J 183 L
4-8-42 n. n n n
6-15-46 n tt
n
Lead Naphthenate (4230) Octoate (24% Pb) Hexogen (24% Pb) Compound. X-507 Compound D-121 (4230) Octoate (24% Pb) Hexogen (24% Pb) Compound X-507 Compound D-121
OX OK OK OK
OK OK OK OK
-
OK 7ei7 slight Slight
OK Slight (9-1/2 Mo.) Very 3light ConsiderableConsiderable
or.
OK (9-1/2 Mo.)
0007-SWP-044538
0007-SWP-000113907
Paint Research Jttno, 1948
^ -25-
197 - SUP 471
Mr. E. W. Pasig and Mr^ Van Loo inspected the panel end/or house
testa of the National Lead Company (basic silicate white lead house paints
only) and the Titanium Pigment Corporation at Sayville, N. I. and of the
du Pont Pigment Division at Wilaipgton, Delaware. A report was prepared
and distributed.
,
Exposures 10518-39 CS, t|N and P were examined after two years' exposure south and north vertical "at Chicago and south vertical in Florida. The paints involve studies of basic silicate white lead (both National and Sagle-Picher) whore basic silicate replaces (1) lead sulfate at equal volume, using XX 503 zinc oxide for 412 dry, (2) replacing basic carbonate white lead in a conventional 303 lead - 303 sine oxide - 153 TiOa - 253 ex tender top coat pigmentation. Basic silicate was also substituted for equal volume of lead carbonate in Rex 45q and in MU-401 zinclose primer.
The Chicago panels are difficult to evaluate because of the gen eral cleanness even on the north. The principal failure is erosion. The SUP top coats made with basic sulfate white load are the most pronounced in this respect. In general the Hf 401 primer is Inferior to Rex 450. National's 45-X basic silicate white lead gives poor results in MU 401. In the straight top coat comparisons, there is very little choice as to the special materials.
The Florida panels are ouch more varied in results and the major conclusions oust be baaed on them; this applied to dirt as well aa film integrity. Rex 471 with Rax 450 normally looks bad in this series because of a spotty surface flaking (poor clean-up). Eagle-Pichor' 3 material al
most invariably deans up without this prolonged spottiness, but whilo National's is just as clean in some cases, it is no better than the regu lar in other cases. Both show a "yellow" film, hcwover, and are not satis
factorily white. The only cases of serious failure (more than a very slight microscopic cracking) are found an paints which contain Eagle-Picher and National basic silicate substituted for the basic sulfate content of the leaded zinc grid* normally contained.
Hera again basic sulfate white lead shows up poorly when substi tuted for tbs BCWL normally contained. Paints in which the basic silicates have been used to repl*ce the BCVL continue to perform equally well with the standard SHP. This difference in performance may possibly be ascribed to the use of a pure zinc ( XX 503) in the firet case and a co-fumed leaded zinc in the second.
In the Florida exposures W 401 is only very slightly inferior to
Rex 450 and the silicates in MU 401 are equivalent at this inspection to BCWL.
0007-SWP-044539
Paint Research May, 1948
-13-
#97 - Cont.
KB 8557 - Regular (48) baaed on IOC# (44).
Body - 50" A.V. - 6 Color- 8
KB 8558 - Special bodied ffyvoil #2
Body - 51" A.V. - 7 Color- 8-9
The paints made with the Myvoil liquids were similar in brush ing, flow and diying properties to the regular SWP batches made with standard oils CTV 5007, regular (3316), and RB 8557, regular (48). Addi tional paints arc to be made on a tint base formulation to be exposed along with the whites at Chicago and Florida.
5W? Gloss White (Bodied Oil Tests)
Bodied Oil Viscosity #5
Drying Time
Brush-
Batch Under Test FreBh O'Hite Set-to-touch 0'Nite ing
Flow Gloss
983 L Std. (48) (all lin seed)
20"
20"
5 hr. 40 min. Good Good; Good GoQd slightly free.
980 L RB 8558 19.2" 27.4" 4 hr. 18 min. ft
ft
" Good
979 L RB 8557 18" 21"
4 hr. 15 min. J!
n
ir r
984 L (3316)
21.2" 28"
4 hr. 13 mis. IT
Good
" Fair
981 L CTV 5007 18" 982 L CTV 5008 19"
21.8" 4 hr. 15 min. n 22.6" 4 hr. 35 min. n
Good; Good - Fair slightly free.
If tr ft
0007-SWP-044540
0007-SWP-000113909
Paint Research May, 1948
-12-
#97 - 5WP 471
Plant grinding triala have been Bade to evaluate R. T. Vander bilt's Nytal #300. This material was substituted for the extender por tion in SWP 'White and tint base formulas. Reference tests were made using 20 F and the 2201/2203 Metronite/Carbola Talc combination.
One mixer was made using each extender and an aliquot part of
the paste was reduced in the laboratory to check the characteristics. Results are tabulated below:
Rex Date
Inert Pigment
Mill
Rate
Paint Characteristic3 Grind Vi^c. Gloss
496
IT
w
5-21-48
II
n
2201/2203 20 F Nytal 300 - CW 2748
3-roll
n
ft
257 GPH 240 240
OH 45<l + Low OH 51" + W 1-1/2 H 37" Good
465 5-26-48
9 ri
n tt
471
It
It
5-24-48
II
II
2201/2203 20 F Nytal 300 - CW
2201/2203 20 F Nytal 300 - CW 2747
rf*
CD
3-roll
T?
n
257 GHP 257 280
Premier 330 GHP It 350 ft 300
1-1/2 H 28" Good 1 H 38.8" Fair 2 H 22" VG
1 H 2i.6" Fair 1/2 H 23.3" Low -
1-3/4 H 20.4" Good
Summarising the above testa, it may be concluded that Nytal 300 is easier to grind than either of the reference materials. The Paint Re search Report for April, 1948 reported results of similar tests made in the
laboratory. The low conoistency characteristics of Nytal 300 would exclude an acceptance of this material as a direct alternate for 20 F or 20 L. It could be used with a small portion of high consistency extender. Micro scopic examination shows Nytal 300 to have a crystal structure similar to 20 F except that it is more uniform for size. The coarse particles are not
aa coarse, while the fines seas to be almost completely absent.
The Resin Research Department has submitted the following bodied oils for evaluation in SWP Gloss White.
CIV 5007 - 1 part (140), 4 parte (1273)
Body - 50" G-H A.V. - 5.5 Color 6.7
CTV 5008 - 1 part (140), 4 parts Myvoil #2
Body - 50" G-H A.V. - 4.4 Color 5.6
(-Cont.)
0007-SWP-044541
0007-SWP-000113910
-15197 - Cont.
A final report was written on exposures 6241-4 C, Cof., exposed 53 months at Chicago and at Coffeyville, vertical south. The panels test W 2063 safflower seed oil in paint S-71-B-25 sent us from Cleveland Tech nical Service. The control paint (not applied in the usual 1/3 guide manner) is regular Hex 471 of 10-27-41, while S-71-B-25 is the same T.ith all the (5091) replaced by W 2068. The paints are tested both as 2 coats self-primed (first coat reduced) and over Rex 450 Undercoater. The group represents a very unusual example of variation in performance between Coffeyville and Chicago exposures, showing a complete reversal of dura bility. The safflower tests are relatively very poor at Chicago due to erosion and subsequent cracking, while at Coffeyville the safflower shows up much better than the regular, ?/hich shows very bad checking and crack ing. Rex 450 priming gives considerable improvement. Since the poorest showing of the safflower paint is at least as good as the poorest showing of the regular paint, we must consider it to have possibilities.
Some time was spent in preparation for a talk ty U. Van Loo before the 25th anniversary meeting of the Division of Paint, Varnish and Plastics Chemistry of the American Chemical Society, on the subject, "Twenty Five Tears of Paint Testing.
0007-SWP-044542
0007-SWP-000113911
#97 - Cont.
-14-
Group 2 (a). Not satisfactory, primarily because of low durability.
8 dry China Clay
Southwark Gilder's Whiting
2500 Suspense Whiting 2247 Atonite
"R" York Ground Limestone "A" York Ground Limestone
1817 Surfex 3 dry Silica Smoke
A.S.P. Cloy #1 A.S.P. Clay #11
10 dry Lesanite
A.S.P. Clay ,H
Group 2 (b). Not satisfactory, primarily because of fading or dirt.
2077 Celite 213 Blanc Fixe
1989 Microne Talc (O.K. in later stages)
2198 Georgia Clay
CW 1875 Micron!zed
"E" Grade Ground Limestone
H.O.A. Asbestine
599 Barium Carbonate
1194 Ground Limestone
Group 3. Unsatisfactory
306 Barytes
Aluminum Flake #5
566 Mineral Whiting
1246 Soapstone (Color very bed, but performance fair.)
1822 Talc Dust (Ditto)
Panels 6156-49 C, Cof. were examined after approximately 4-1/2 years at Coffeyville and at Chicago, vertical south, cedar beveled siding. The main interest was in zincless primers and top coats. Titanium Pigment Corporation's MW-401 zincless primer used with two special zincless top
coats shows good durability under Chicago conditions (erosion the main failure pattern) but poor durability at Coffeyville and serious dirt col
lection. When tinted, these zincless top coats ore definitely inferior to orthodox white formulas tinted (disregarding regular tint bases) in both durability and appearance. These specials consist of BCWL, magnesium
silicate and Ti-Fure 51 in a resin-modified vehicle, with one of the two carrying about 8J mica, which gives little if any advantage.
0007-SWP-044543
0007-SWP-000113912
t
-13-
#97 - Cont.
A comprehensive report was finished during the month covering ail exposures on house paint extenders. Only the highlights can be presented here. Most of these tests are at two locations., on the usual cedar siding, and represent 100? substitutions by volume of nearly ell recognized ex tenders in both pre-war and bodied oil type formulas. Undercjoaters, all Rex 450, are tinted gray under the vrtiites and white under the Slate and Colonial Yellow tints, to emphasize erosion. Exposure times range from 17 months (2 summers) to nearly 4 years, practically all the more commonly known materials being in the longer exposure category. Following a classi fication used in the Report of Investigations for December, 1946, which was based on much less conclusive data, the extenders are rated as shown below. We are necessarily omitting some special notes having to do mainly with more or less conflicting results at the two locations involved.
Group 1 (a). Satisfactory in all respects.
20 L, 20 F, 20 1ISX
Pyrax B (poor grinder)
2203 Carbola Talc
Pyrax HP (poor grinder)
2201 Metrolite BXXXX (if used with 2203 dry)
1179 Water Ground Mica (7 to 10?)
Group 1 (b).' Satisfactory, but short exposure, durability not fully established.'
Asbestol Filler* Flbrene C*
Ooolitic Calcium Carbonate* Cook's Sno-Float Whiting*
Warm Springs Talc*
Talc #41
Velvatone* Royal Talc* Micro-Nite*
Talc #42 Talc #49 Talc RC-500
*These items might be considered for Group 1 (a), as recently reported. Florida results at 2 years show all of them in good condition.
0007-SWP-044544
0007-SWP-000113913
-12-
#97 - Cont.
The R. T. Vanderbilt Conpany submitted a sample of Nytal #300 magnesium silicate to toe evaluated for general performance in SWP. This inert was compared with regular 0 F on an equal weight basis and the paints checked for grinding time, viscosity, flow, brushing, etc.
As indicated below, two runs were made. In each run Nytal ,,'500 was found to be easier to grind than 20 F. The Nytal #300 batches were somewhat low in body, but the paints had good brushing, flow and gloss characteristics. Based on these initial testa, it appears that a small amount of a high consistency extender way be required to equal the body obtained with 20 F dry in SWP. R. T. Vanderbilt are now planning to supply the Chicago plant with 900 pounds of standard good color Nytal #300 for a plant batch of Rex 471 and 2700 pounds of Nytal! #300 which is slightly off color, to be used in SKP tints.
Nytal #300 in SWP
Batch OJ 830 L
Inert 20 T
Grinding Time
V 20"
Grind 2H
Viscosity #3 Fresh O'Nite
24" 34"
ssafrUK &2S Good Good
Gloss Good
OJ 831 L Nytal 6' 10" 3 H 17" 21" #300
Slightly Very Very
free
good good
OJ 830 L 20 F Repeat
9' 35"
2-1/2 H 30"
31,6"
Good
Good Good
OJ 831 L Nytal S' 10"
Repeat
#300
2-3/4 H 20"
20.2"
Slightly Good Very
free
good
The Chicago Varnish Department submitted a sample of Dorwart and Sons' 80/20 Soya/CWQ bodied oil for comparison with a saaple of (3316) in SWP. The paints were checked for brushing, flow, drying and gloss char acteristics. The sample made with Dorwart and Sons1 oil was high in body, short in flow and somewhat slower in drying.
Paint Viscosity
Drying
Bodied Oil Fresh O'Hite Brushirg Flow Gloss Set-to-touch O'Nite
OJ 828 L (3310) 25.4" 30.4" Good
Good OK 6 hr. 55 min. Good
OJ 829 L
Dorwart and Sons' 80/20 Heat Bodied
Oil.
47"
54" + Sticky 1/8 cup
Short
Low 7 hr. 5 min. Good
000T-SWP-O44545
0007-SWP-000113914
V-
i
9#37 - SWP 471
Comparative label analyses plus weight per gallon measurements on samples of competitive house paint, undercoater and top coats, reveal that wide differences exist between the products being offered by the various umnufacturers. du Pont, Devoe, Pittsburgh, National Lead, and Sherwin-Williams aro compared.
Undercocters Lead contents range from 5-1/4 to 4-3/4 pounds per gallon,
with the exception of Pittsburgh undercoater, which carries no basic car bonate white lead, and only 1.20 pounds basic sulfate white lead. Zinc oxide is present as 10$ of the Sherwin-Williams pigmentation and as 50$ of Pittsburgh's pigment. National and Devoe use resin in the vehicle but no zinc oxide, du Pdnt use neither resin nor zinc oxide. ti02 ranges between 1,0 and 1.5 pounds per gallon in all paints. Magnesium silicate -plus other extenders range between 2-3/4 to 4 pounds per gallon of paint.
Finish coats present a somewhat mors uniform picture than do the underooatere. the lead contents vary from 1-1/2 to 4 pounds per gallon, with the average about 2-1/4 pounds. Zine oxide varies from 2 to 5 pounds, and titanium oxide varies from 1 to 1-7/8 pounds per gallon. Magnesium silicate contents range from 2 to 3-1/2 pounds per gallon.
Vehicles with controlled penetration properties ore used by Pittsburgh, du Pont and Sherwin-Williams. Devoe's paint is intermediate and National's Dutch Boy Bouse Paint performs as though it were an all raw oil vehicle.
Cohering the paint* for opacity it was found that du Pont and Devoe are substantially low, with National, Pittsburgh, end Sherwin-Williams all about equal. Draw-downs of each of the products show all the competi tive materials to be low in glees. This was probably due to poor dispersion since all rated 0 Begman as compared to 2-1/2 H on SWP. Brush-outs on wood confirmed gloss observations on the draw-downs.
Coxporativs compositions of both undercoaters and top coats based on label analyses are shown below;
!
0007-SWP-044546
0007-SWP-000113915
-10-
#97 - Cont.
Comparative Analysis of House Paint Undercoaters Expressed as Pounds of Each Material per Gallon
du Pont Weight per Gallon 13.47
Nat ional
14,63
Devos 13.16
Pitts burgh
12.74
SWF Rex 450 Card 24
14.60
SWP Proposed Revision RS 2277
14.26
Pigment
BOWL
3.58
4.75 3.26
3.74
2.37
BSWL
1.20
.50
1.20
Zinc Oxide Ti02
2.26
.90
.96
1.42
.95 1.20
1.17
1.23 1.17
BaSO*
2.23
Mg. Silicate Total pigment
3.42 7.96
3.32 9.49
2 8.58
2t& 7.52
2j I_ 9.01
8.78 '
Vehicle Linseed Oil
2.78
1.82 2.17 3.46
2.02
Soya
1.09
Tung Total Oil
Resin
2.76
........
1.82 .99*
-i# 2.49
.19
.
3.46
_tsa 5.33
Varnish
.99*
Drier and Thinner 2.76 1.55
1.94
1.76
2.13
Varnish is shomi on label. 50)6 solids is assumed.
2.02 1.09
.22 3.33
2.13
0007-SWP-044547
0007-SWP-000113916
-11-
#97 - Cont.
Comparative Analysis of House Paints Expressed as Pounds of Each Material per Gallon
Weight per Gallon Pigment
BCWL BSWL
Zine Oxide
TiOs,
Mg, Silicate Lead tltanate Total pigment
du Pont 14,57
National 15.20
Devoe 14.33
Pittsburgh 14.00
Rex 471 Card #48
14.80
1.61 2.94 1.04 3.55
-
8.94
2.17 1.92 1.95 1.75 1.95
, .i .
9.74
1.22 1.44 2.66 1.28 2.11
9.18
1.54 2.85 1.85 2.16
....
6.40
.59 1,55 2.86 1.47 2.94
.....
9.41
Vehicle
Linseed Oil
1.58
Soya
2.06
Tung Total oil
--
3.64
Drier and Thinner 1.00
824
4.37
--
4.37 1.09 o!.15
4.54
"
4.54 .62
$1.12
3.72
--
3.72 1.89
92/*
2.22 1.18
.29 3.89 1.70
98^
0007-SWT-044548
0007-SWP-000113917
nmti w
M.- qffm
-12-
la the December- report *e reported on a fundamental Investiga tion that was started to determine what properties of heat bodied oils affect the flow and consistency of paints. In connection with this prohlem, sampJ.ee of (48) prepared by the methods as listed in the Decem ber report were made into paints. These paints were initially checked for brushing, flow, drying and viscosity, and were then placed in stor age for a future check on after-bodying tendencies. These paints have now been checked after storage for a period of 105 days.
SHP Rex 471 Using Various (48)1s Extenders 4 Parts 20 F - 1 Part 2201 Dry
Batch
Viscosity - #3 Orifice
28 105
Brush
Fresh 1 Day 4 Devs 7 Days Days Days Set;-tO-tOUCh ing
Flow
464 L
21.4" 22"
(48) #1
26.4" 29.6" 34" 40" 6 hr. 15 ain. Good
Good
465 L 29 36 36.8 36.6 43 56 + 5 It 45 tt Good - Good (48) #2
466 L
29 37 42.4 50
(48) #5
55 + Too 5 It 15 tt Fair hvy
Fair
467 L
43,4 54.4 61.4 60 + Too tt 5 ft 10 tt Sticky; Fair +
(48) H
hvy poor.
468 L
35
(48) #5
43,8 45.8 44
54.4 tt
5 it '35 n Fair + Fair +
469 L (48) #6
470 L (48) #7
29 38
36.8 41.2 43.8 51,4 it 5 tt 35 n Good Good -
47.2 50.8 ; 53.4
51.8 ft
5 It 35 it Fair + Fair +
42.8 52
62
58.6
68 +
n
5 ir 45 IT Fair
Fair +
'o-N4*-
S3
*lfe
CD
472 L
27
(48) #9
31,8 , 33.4 . 33.6 46.2 55 + 5 >> 45 tt Good Good -
473 L-
35
(48) #10
474 L
27
(48) #U.
44.6 48 30 36.2
48.8 43
55.4 Too 5 tl 45 tl hvy
54 57 + 5 Jr 45 tt
Fair + Fair + Good Good -
475 L
27
(48) Old drum
29.4 S3
34.6 40 43 6 It 05 If Good Good
476 L
20.6 21.6 25
24
28.2 30.3 6 ft 30 ' tl Very Good
(48) New drum
good
All batches had good through dry, with slight tack. All batches bad good house paint gloss.
0007-SWP-044549
0007-SWP-000113918
-13-
#97 - Cont.
The Resin Research Department has submitted a number of alkyd
varnishes during the past few months for evaluation in house paint formu lations. This investigation was held up from time to time due to pressure of other work, but we have now completed the initial tests. A number of paints made from these liquids will be exposed this spring. Due to the wide range in body between, the various alkyds, a considerable number of thte experimental paints were too high or-too low in body and had to be eliminated. In several cases the paints were 3hort in flow, while others were high. Paints using the following alkyds were selected as being fairly satisfactory for body, brushing, flow, etc.
Characteristics on Alkyd Vehicles
Resin
Oil Bod A. V. Color
RB 4259 RB 4828
(V 15012) Alkyd (V 15777) 1!
(44) and (1273) 2 4.5 9 +
(2182)
E 5.2 6
RB 5135
- P.E. Phthalate
(1273)
V 4.0 6
RB 4825 RB 4824
- Dipentek - r?
(2182) (2245)
Y - 5.0 Y 4.0
12 12
RB 4257 (2159) Type Alkyd
(2182) and (44) R-S 4.2
-
RB 4679-00
P.E. Phthalate
(4015)
V 6.2 9-10
RB 4826
CV 5057 Alkyd
(1273)
T 4.4 7
RB 4256 RB 7424 RB 7429
(4106) -
It
n n
(1273) and (44) 0
CW (1999)
%Z
75% CW (1999) X 25% Soya F.A.
5.6 7.9 10
10 11
-
RB 7430
-n
50% CW (1999) V 9.5 50% Soya F.A.
Dp to the present time we have not developed an alkyd or semi-alkyd paiat that has optimum brushing, flow, and drying characteristics for a paint of this type.
0007-SWP-044550
0007-SWP-000113919
-14-
#97 - Cont.
100*6 Alkyd House Paints
Batch 408 K
409 K 410 K 414 K 415 K 416 K 45 K 453 K 454 K
Alkvd RB 4257
V 15751 RB 4258 RB 4259 RB 4824 RB 4825 RB 4257 V 15731 RB 4258
Pigmentation
Viscosity Brush-
P.V.C. Fresh 3 Ho. in*
Flow GIo s b
1403, 412, 18 dry 21? 26" 26.2" SI.
Good Very
sticky
good
11 w If
n 27" 48"
n
It tt
ft ft 11
n
24.8" 32.5"
it
Fair
It
H w If
it 29.8" 37.4" Good Fair + "
ftft If
it 25" 40.4" If
tt It
It n tt
tt it n
! it ft tIf tt
it 27.2" 39.8" Sticky Good tl
5 Mo.
36% 16.2" 27.8" Fair Fair Good
5jfeU M 14" 21.2" Good
5 Mo. ft 14.8" 23" Fair
n Fair tt Good
Serni-Alkyd House Paints
Batch Alkyd
Viscosity BrushPigmentationP.V.C. Fresh 24 Hr. in* Flow Gloss
601 L RB 7424
412, 1403, 2307, 2188. 18 dry
29.8" 34"
Sticky Good Very good
602 L RB 7429
u
29" 54" n n
603 L RB 7450
it
_ 29" 35.4" n SI. Good short
608 L (4106)
H
_ 25.4" 29" SI.
n Very
sticky
good
607 L 100? RB 7424
412,. 1403, 18, 1895, 20 MSK, 2307
29" 33.8" Sticky Very Good good
158 L (2) - (48) 20 F, 1403, 412, 1.8 dry.
32" - Good Good Good
0007-SWP-044551
0007-SWP-000113920
-15-
#97 - Cont.
In cooperation with the Cleveland Technical Service Department, samples of various magnesium silicate pigments were examined under the microscope to correlate plant experience in usage of these materials with their particle size and shape. The samples in question were as follows,
with the Cleveland plant experience noted:
(1) 20 L of 7-17-46
Plant experience good.
(2) AH 32 of 0-26-47
Plant experience very badj hard to grind.
(3) AH 32 " 2-16-48
(4) AW 82 n 2-16-48
Better than (2); not as good as (l).
(5) Special 20 F superfine No tests completed.
Photomicrographs show sample (2) to contain a high percentage of large groupings, many as large as 200 microns. Sample (l) is uniformly fine, with no acicular particles longer than approximately 50 microns. Samples (3) and (4) above are Intermediate between (l) and (4) with a tend ency to be more similar to (2) which has caused trouble in production. Sample (5), the siperfine 20 F special, is similar but inferior to sample (l) 20 L of 7-17-46. Further Improvement is required before either AW 82 or 20 F special will be equal to the old 20 L.
In view of the difficulty in grinding AH 82 magnesium silicate for house paints, the exposure tests on extenders have been reviewed once more. So far as durability is concerned there seems to be no reason to rate 20 F or AH82 above the 2203/2201 hlend. These exposures are 3 years and 9 months old. Within the limits of availability it is recommended that the order of preference for these materials be based on their com
parative ease of grinding, namely 2201/2203, 20 F Superfine, and AW 82 in that order.
In the interest of improved performance it has been recommended that the zinc oxide content of SHF tint base be returned to the 33$ level which it occupied prior to the severe pigment shortage period. As long as a dollar pigment cost Is imposed as the limiting factor which would stand in the way of the return to 35$ sine oxide it is proposed that this move be made at the expense of the basic sulfate white lead by shifting from 35/65 leaded zinc oxide to an appropriate blend of 414 and 511 dry.
Panels 6812-5 C, Cof. were examined after 44 months, vertical south, at Chicago and Coffeyville respectively. The paints are Rex 317 Family Paint Cream, regular of 11-7-41, versus a special using 1/3 each of Cryptone MS-130/leaded slnc/extender. Better tint retention was sought, baaed on previous good results with US-130. Though the group of panels was small, it is an intensive test, and several valuable indications resulted:
0007-SWP-044552
0007-SWP-000113921
-16-
#97 - Cont. 1. Chicago versus Coffeyville exposure. MS-130 looks comparatively bet
ter at Coffeyville, because Chicago exposure emphasizes its erosive tendencies. Any tendency to hold better color was completely counter acted at Chicago by a deep erosion which left a "streaky" appearance; even at Coffeyville, KS-130 was superior in color only in the earlier stages. Both places seem to show, however, that MS-130 resists check ing and cracking better than the low-cost lead-zinc-extender formula, and is at least as good in clean-up.
2. Self-primed versus Rex 450 Undercoater. A tremendous improvement results with the latter. There is some indication that the MS-130 type does better than the regular when the switch to self-primir^ is made.
The exposure series 9632-7, 9647-8 and 9861-2, testing various pigment and vehicle changes in Fax 69 Porch and Deck Gray under several conditions, was given a complete final evaluation. Since this series con sists of three parts, of two to six panels each, exposed at Chicago and at Florida for different times, complete data on the exposure conditions would be too long to include here. Roughly, the conditions consisted of (a) 2-coat self-primed work on 8" x 24" yellow pine panels exposed 45 south at Chicago for approximately 2-1/2 years, (b) the same paints on steel, 45 at Florida for 7 months, and (c) the sene paints tested in the Wenther-Ometer for 3000 hours. The most outstanding general results were: (l) great improvement due to the use of titanium-calcium as against leaded sine-extender in resistance to cracking and peeling on yellow pine, and (2) the very poor showing of CRB-0292 "coal resin" vehicle, which chalked extremely and flaked away, in spite of some promise in the early months due to unusually good gloss. Minor differences and equivalent performances may be listed as follows (thus mentioning all tests involved):
(a) CVR-139 and CVR-157 tall oil linseed variations are tested against (4880)E eater gum-Dehydrol varnish, both with the leaded zinc and titanium pigmentations, and there is a slight but consistent trend in favor of (4880) E.
(b) The titanium type formulas tested included:
Titanox RC - Atooite - mineral whiting.
Ti-Pure R-610 - Atomite - mineral whiting.
Ti-Pure R-610 - Atomite - ilultifex MM.
Ti-Pure R-610 - Macro Velva.
There are some differences in parts of the test set-up, but no clear indications. The lost named is slightly best on wood (Chicago), while RC seems somewhat inferior in several cases.
0007-SWP-044553
0007-SWP-000113922
-17#97 - Pont. (c) Florida tests, beir^f or steel only, are of secondary interest, but
there is (a) a very definite superiority of the lead-zinc type in resisting rust, and (b) at least one clear-cut case of (4880)t surpassing the tall oil vehicles in rust resistance.
0007-SWP-044554
0007-SWP-000113923
-16-
#97 - STIP 471
Two factory fetches of SWP were made on the proposed formula OJ 573 l (see January report, page 13) using 20 F as the Inert in the first batch and 2201 dry and 2203 dry In the later batch..
Formula OJ 573 L
Inert Used
Size
T. Wt. A. Wt. Viscosity - #3
Bex 471, C 278 B 20 F dry
900 gals. 14.80 14.97
30 seconds
Hex 471, C 298 B 2201 dry 2203 "
1800 gals. 14.80 14.82
30
A gallon aarple of Bex 471,. C 298 B was 3ent to Cleveland for their inspection. The two production botches compared quite favorably for brushing, flow and drying characteristics with our present SWP.
Panels 12472-87 CS, CN, Cof. and F were prepared for exposure south and north vertical in Chicago,, and south vertical in Coffeyville and Miami. The paints include SWP White and Colonial fellow paints carrying a percentage
of soybean oil in the vehicle. Hex 471 and Hex 465 are exposed with all linseed binder, with 19 gallons (40*) of (3516), and with the whole binder replaced with ATM 14 and 15, PJS. soybean esters. To check dirt collection properties the paints were dried at temperatures between 45 and 50 F.
Panels 8430-6 F were examined at 3 years' Florida exposure, vertical south. TheBe are on cedar beveled siding, primed with Rex 450 Undercoater tinted gray. The Chicago tests,, at 42 months were given a supplementary examination. The paints tested-ore Mew Jersey Zinc Company's "proposed post war house paints" and were supplied by them. Ihe p.v.c. is approximately 35*, with weight per gallon 14..5 pounds, and oil content 3,8 pounds per gallon. With one exception, the vehicles are alike, with 16.5* by weight of Alinco Z-5 bodied oil, 49.5* raw linseed, and 31.7* mineral spirits. The exception usee "Bodied Varnax* for the Alinco oil. The pigmentations are:
Paint So.
1 2 3 4
Tl-Pure R-200 15.0*
n n it
Lehigh 6 Leaded Zlas
47 JO*
55.0*
n
62.5*
Mica 10.0*
10.0*
ft-
Asbestine 28.0* 30.0* 20.0* 12.5*
Albalith 11 -
5 - 35.0*
6
15.0*
55.0*
(As #5 except "Bodied Varnex")
15.0* 10 JO*
20 JO*
50.0*
-
0007-SWF-044555
0007-SWP-000113924
-17-
#97 - Cont.
Both locations, especially Chicago, show poor appearance due to
"show-through" of the gray primer. The erosion of the lithopona sample makes it outstandingly poor. Shallow "surface flaking" is a bad feature on the Florida test; it seems to be considerably alleviated by the use of mica. The SUP guide, with 12$ basic carbonate white lead, did not show this failure. It is difficult to 3how a trend, because both the high and low leaded zinc samples are among the poorer in durability. The "Bodied Varnex" sample is definitely good at Florida, but poorest (except lithopone) at Chicago, perhaps due to cracks in the "valley*," as brush-marks are heavy. The Chicago location might promote this failure because of the eroding tendency. Paint #1 seems slightly below average in durability, both locations considered.
Exposures 8714-32 C, F were retired and reported after 3 years' exposure, vertical south, at Chicago and Florida. All panels are cedar beveled siding, prised with Rex 450 Kndercoater tinted gray. The purpose of the main part of the aeries was to determine the optimum lead concentra tion for a modified oil conservation type of formula ns expected to be used in "Post-War" SWP Gloss White. The results, in general, were unsatisfactory,
probfihly due to three factors: (a) unsuitable p.v.c. for the formula type, (b) poor drying conditions when painted, and (o) poor control of film thick ness. The information obtained, obviously not as expected of a "ladder" type test, may be given briefly:
Group I.
Lead content varied 0 to 35% in 5% steps, zinc oxide held at 30$. Erosion very bad at Chicago, Florida failure light. Practically identical performance of all paints, except 0$ lead ahows def initely more failure at both locations than 5$.
Group XI. Lead content 0 to 20$ in 5$ steps, zinc oxide varied 33 to 36$. (in both I and II, Titanium content varies to give constant opacity.) Almost exactly same performs.nee as Group I, but in this case it is only the Florida tests which show the peculiar inferiority at 0$ lead.
Group III Loosely related series testing Titanox RC against RC-HT and C (l271 dry) in the some type of formula. 1271 Btands out for
clean appearance at Florida, but is obviously subject to erosion. Both RC and RC-HT show much more durable films, but especially earlier in the test tend to collect dirt.
Further work has been carried out to establish a house point formu lation baaed on the use of polyallyl esters of linseed and soya that would be less subject to wrinkling than the formulations reported in the Monthly Report for November, 1947, page 17, The polyallyl esters of linseed, RB 6034 and RB 7686, and the polyallyl esters of soya, RB 6035 and RB 7687, were used only to the extent of 10 gallons per 100 gallons of paint in
Rex 471 and 15 gallons per 100 gallons in SWP Woodland Brown,
0007-SWP-044556
0007-SWP-000113925
-19197 - Cont
The lower gellonage of polyallyl esters reduced the wrinkling cs conjjared with the earlier tests. However, we have not been able to elim inate this wrinkling condition even with the lower gallonage and any fur ther reduction would not warrant its use. An effort will be no.de to reduce the wrinkling further by the use of Ctrisoy B in place of linseed. The paints ere to be exposed r.t Chicago and Florida in the near future.
0007-SWP-044557
0007-SWP-000113926
VJOUnSHPMOCEJI REPORT
................ (-3316.-).......b-......... -
Std. r'JTir
TUtvnd
Minimnm
Stone*
Formulator............................................................Tim#........................ Hr*. C*ctrifnuj*d.-.................. Ag* limit............ Montlm, Loa...
.......Pra. Batch-..(.?$1.1?............ Batch Sba._
-X Std Batch#..........................Xattla#............. Batch Start*! bj..........................
Standard Formula 1 Haw Found* } Gallon* Material
Umd Formula
T 1 Batch j
*" !TTMp'r:al5. VUc.
Cora
Acid Valu*
Manuiactuzing Imbucllooi f rd Bamarki
! ! (1271) 4022
i i
i
------ 1----------
i
!
(WO) 2207
1023 60
:1 j:
i -----------j----------------- \
---------- 1
10120 ! - : $
l,oo; 560 3,00 560 3,00 $60 4,00 560 $,00 $60 5.15 560 6i00 485
2,5 5
i -Jug-t (1271)4(140) 79 $6Qr.
W-I
Start 303 Mo m_______________ 3top arw Mn a m-t _________
__Start co^ blew_______________
_7.2 Holt! for body
49"
Wats h A.V*
coot s. DR0I
Gat 6o" Body
Water #pr*T
1i
1
---------------- 1
i---------- 1---------
r i
1
Bm I*pul Bm Tu M BmLm Tklaaart Drlanu Us.
Total lapul
Output Found* Output Gallou.
lOM
$045 497$
497$ 627
I
TUaafaH| Wl %
FELXEtfHQ; To. Ho Tfciuiav Taak No.
Timm OXd
TVtirtH Uak x--dmdbf
Start TStaMae
rtoiak ratwiM
Prav. tm PlItaMd
9n*m Warttad T No
A.R ? k-
A.M. P.U.
A P.M. A.U. p .k .
Dn* bf
Spurtal tortruettaaa
CbacaptMlrtlai
Ua. / Sal
Std.
793
PIart
3p. Gi. D.9$2 0.952
Cur* (SuooacU)
UK
1
________________________________ t
9nm No.
t u To . T408-400
Tuk Ruad. Altai
Btiur*
VUe. 55" 56"
Colot
q
8-10
A. V.
100
7-8 9.6
100
Output
ilarlt IT
81. r.t
rutuiud br
Tutti'i Iflittul*
Appro**d By
0007-SWP-044558
0007-SWP-000113927
Sl l
fw
V *. Ifealf
0007-SWP-044559
0007-SWP-000113928
--y inkin' *>1'
Vj
-13-
#97 - SWP 471
On request from Cleveland a revision was made of the SWP doss White formula to use a higher poundage of titanium dioxide with a mini mum amount of leaded zinc and lead. Four formulations, including the Ti-Sil pigmentation, were proposed:
Paint
TiOc
Zinc Oxide
Basic Sulphate White Lead
Inert
Added Lead Pigment
OJ 529 L 15$
32.5$
17.5$
35$ None
OJ 530 L 15$
30$
16.2$
56.3$ 2.5$ Tribase
OJ 531 L 15$
32.5$
17.5$
32.5$ 2,5$ BOWL
OJ 532 L 15$
32.5$
17.5$
32.5$ 2.5$ Tribase
The four formulations compare in cost with current and earlier SWP formulas as follows:
OJ 529 L OJ 530 L OJ 531 L
Costs of 1-9-49
3216,89
217.70
221,84
Costs of 1-9-48
Formula 1-19-45 rt 6-16-43 " ft 7-19-40 "
#37 #26
1o
3236.28 243.82 291.45
OJ 552 L 7-29-47 Card #47
223.70 229.47
n 9-5-35 " #17 337.34
n 12-5-27
- 339.18
The four formulations will be exposed at Chicago and Florida this spring. Our experience with Tribase is very limited, and it was used only in the hope that the reactivity introduced by 7$ of basic carbonate white lead would be matched by 2-l/2$ Tribase, with a saving of 5-1/2/ per gallon. It was decided that for the immediate future a formula based on the following pigmentation should be approved for SWP.
Pigmentation
Proposed SWP Gloss White - OJ 573 L
20 F dry - 300# 1403 " - 150# 412 " - 450# 18 " - 60#
Present SWP Gloss White, 7-29-47
20 F dry - 290^ 1403 " - 136# 412 " - 480# 18 " - 70#
The proposed formula, OJ 575 L, is approximately 2-1/2/ lower in cost, than the present.
0007-SWP-044560
0007-SWP-000113929
-14-
*97__-Cent.
A rather extensive investigation has been made of the possibili ties of using dehydrated castor for a portion of the oil in SWP. Various tests have been made by introducing the conjugated oil as (2525) and (5316) and checking the films for frosting and winkling teniencies when exposed to heat and ultraviolet light.
Frosting and Wrinkling on .006 inch flip in arc
1. Rex 471 (all linseed formula)
Trace
2. rt (5 gal, (2325)/100 gals.)
3, tt n (10 "
it n j
4. it n (15
n if j
5. n w (19 "
" rt J
Definite to alight Bad
Very bad Very bad
Other tests were also run on paints made by introducing the conjugated oil as part (5516) and part (.2325).
Batch OJ 560 L
Bodied Oil 19 gals, linseed (46)
C0B.tW8t9d.9a Kone
doss on .008" film in are___
Good
OJ 561 1
19 gals, (3316)
3.B gals.
Good -
OJ 562 L
(17-1/8 gels. (5316) ( 1-1/2 " (2325)
5.0 "
Shir
OJ 565 L
(16 gals. (3316) ( 3 " ' (2525)
6.2 "
Fair -
OJ 564 t
(14 gals, (3316) ( 5 " (2325)
7.8
Poor
These tests indicate that store than 5 gallons of dehydrated castor or combinations of conjugated oils would be a potential source of trouhle in SHP if applied at low spreadirg rates during the summer or under weather conditions which would aggravate surface drying and winkling.
A series of bodied oils based on various combinations of linseed, soya, Dehydrol and kettle dehydrated (113) were submitted by the Resin Research Department to consider possibilities of increased usage of castor oil in SWP.
0007-SWP-044561
0007-SWP-000113930
-15-
#97 - Cont.
CTO 993 994 996 997 998 999
% (2325)
- 67 - - - 40
* (44)
33 35 20 40 67 20
% (1273)
- - 40 40 - 40
% Kettle Dehydrated (113)
67
- 40 20 S3
-
Body (G.H.V.)
61" 55" 63" 55" 63" 53"
A. V.
13 10 10 10 11.5 10
Color
97 88 87
The various oils wers used as a replacement for (3316) in SWP and the paints chocked for general perfornance. The only bodied oil that coopered favorably with (5316) or linaeed (48) ia CTO 997. The laboratory batch of SWP made with CTO 997 ia Similar to the regular SUP using (3316) in body, brushing, flow, drying and gloss characteristics. This serieB of tests also indicates that 4 to 5 gallons of dehydrated castor is the maxi ma amount that can be used in SUP without noticeable drop in gloss.
Evaluation of Bodied Oils In SEP
Batch OJ 541 L OJ 542 L OJ 535 L OJ 536 L OJ 537 L OJ 538 L OJ 539 L OJ 540 L
19 Gals. Bodied Oil
Used (48) linseed
(5316) CTO 993
CTO 994
CTO 996
CTO 997 CTO 998
CTO 999
Viscosity - #5
I&Z&&
Fresh 24 Bt b. 2 Days Set-to-touch Q'Nite
27" 31" 38.2" 43" 58" 67" 45" 52" 48. B" 56.2" 27" 31" 40.2" 45" 44" 48.2"
30" 6 hr. 10 min.
43.4" 6 tt 15 "
3 days 70" 6 n " 3 days 56" 6 n 3 days 62" 6 it 15 min. 3 days 36.8" . 6 it 15 " 3 days 46.8" 5 n 30 " 3 days 50" 5 tt 30 "
Good
It n
n
H tt It
tt
(Cont.)
0007-SWP-044562
0007-SWP-000113931
-13-
#97 - Cont.
Evaluation of Bodied Oils in SWP Cont.
Batch
Brushing
Flow
Gloss on .006 inch film olaced in arc
OJ 541 L
Good
Fair
Good
OJ 542 L
Slightly sticky
Short
Good -
OJ 535 L
Sticky
Short
Poor
OJ 536 L
Sticky
Short
Poor
OJ 537 L
Sticky
Short
Fair
OJ 558 L
Good
Slightly short
Good -
OJ 559 L
Slightly sticky
Fair -
Fair +
OJ 540 L
Slightly sticky
Short
Fair +
Experimental house paints were made with all oil introduced as Myvoil 2, soybean oil stripped by molecular distillation by Distillation
Products, as well as with all (1275) alkali refined soybean oil to com pare the drying properties when pigmented in a manner similar to SIP (pre-war formula dated 4-8-42). The paint made with Myvoil 2 was much superior in drying to the paint made with (1273).
Paint
Oil Content
Set-to-touch Time
OJ 579 L 65 gala. AV 94 (Uyvoll-2) Approx. 15 Hr.
OJ 578 L 65 gals, (1273)
23-1/2 hours
The Resin Research Department has agreed to prepare samples of a 55 second heat bodied oil and a (3516) type from Myvoil and (1273) for additional teats.
Paints have been prepared for exposure covering an evaluation of various samples of (3516) including one made by Dr. Coffey usirg the solvent process, also both raw and bodied safflower seed oil in SHP, as well as ADM 65-1 cblnawood-soya oil, using all linseed SWP as the control. A special addition to the series will be Sicca Soya Paint Company's StaPar One Coat Exterior Finish White (see the November, 1947 Report of Investigations, page 19), with the "Catalyzed Soya Bean Oil" vehicle.
0007-SWP-044563
0007-SWP-000113932
-17*
#97 - Cont.
Two tons of CW 2679 micronized 20 F were ordered from Inter
national Talc Company for use in SUP, Laboratory batches of SWP made with this inert appear to be satisfactory for brushing, flow, gloss
end texture. The paint was finer in.texture and slightly higher in gloss than the regular SWP made with 20 F dry, Ihe micronized asbestine appears to be slightly lower in oil absorption then 20 F but produces a satisfactory consistency in the active Rax 471 formula based on (3316). If linseed (46) is used it is necessary to use port 1989 dry. A factory batch of SWP will be Bade with CW 2679 to check production rates and ease of grinding coopered with 20 F.
Laboratory Batches Rax 471.
Batch OJ 558 L OJ 555 L
Inert Used 290# CW 2679
11
(3316) Linseed (48)
Grind 4H
Viscosities - #5 Ffreah O'Nlte 4 Jteq
25.2" 28"
32"
5 H 18
18.8
18.8
OJ 542 L " 20 F
(3316)
2 H 36.4 43
43.4
OJ 551 L
If
M
Linseed (48) 2 H 27
29
29.2
OJ 557 L 240# CW 2679 (3316) 48# 1989
5 H 26.4 -
3 days 46"
Panels 12366-69 CS, CM and Cof. were prepared for exposure south and north vertical Chicago and south vertical Coffeyville, with Fibrous Calclun Silicate from Thompson Weinman and Company in SWP pre-war and cur rent formulas, White, Colonial Tallow and Slate. (See Report of Investi gations, December, 1947, page IS.)
Panels 12390-1 C and F were prepared for exposure coopering 2188 Micro Velva A versus Vanderbilt's Veecote in Porch and Floor Enamel
Cray - Rex 1SS. The extenders were introduced at equal oil demands, resulting in somewhat lower gloss where the higher poundage of Veecote was used.
Exposure panels were examined and reported as follows:
1. Panels 5092-S107 C, Cof. were examined after approximately 6 years' exposure at Chicago ami Coffeyville, vertical south. All are on cedar beveled siding, with Rex 450 Undercoater. The purpose when exposed was to study the effects of lowering titanium and co-fumed
leaded zinc contents in SWP tints as required by shortages in 1941. Ivory, Cream and Golden Fellow tints are used, the main part of the series testing four formulas:
0007-SWP-044564
0007-SWP-000113933
4
-IB-
#97 - Cont. (a) 5-7-41 2051-1895 Tttansx A-NC/lead titanato/cp-fumed leaded zinc. (b) 7-24-41 A 24 - 1395 TiQa/lead titanate/co-fumed leaded zinc.
(c) Only 40 pounds of A 24, no 1895, high BCWL plus co-fumed leaded zinc.
(d) Similar, but mechanical mix with XX-5C zinc oxide and BCWL. Chicago gives the better basis for appearance judgments. Here the mechanical mix is definitely ahead in color retention, but obvi ously more dirty than the others. In general, no foraula looked better than that of 5-7-41. At Coffeyville, appearance is good on all. The inferiority of both the high BCWL formulas (c and d) in regard to checking and cracking is outstanding. Thus lowering of titanium, elimination of lead titanate and lowering of co-fumed leaded zinc seems definitely undesirable. 2. A final report was prepared on exposures 7035-40 F, C, tint bases which had reached a static condition as regards appearance, though still satisfactory in film integrity. The panels are cedar and yel low pine expoaed 4-1/2 years south vertical at Chicago; cedar at Florida, 4 years; yellow pine at Florida, 5 years. Both Slate and Colonial fellow shades are involved. The guides, of early 1942, one using Tl-Pure R-610, the other Titanox A-24, are slightly better in all respects than any of the tests, which aret (a) Oil Conservation, Lowe Brothers' suggested pigmentation using
414, R-610, no lead titanate. (b) Same, but also using Lowe Brothers' vehicle, 2-1/4 gallons
lees oil, more thinner. (c) Hew SWP Tint Base as of early 1943. 414, R-610/lead
titanate at 1/2 ratio. 3. Panels 8121-32 F were examined after 36 months' exposure in Miami,
checking the performance of high acid oils in SWP white and cream. This series uses the same paints as 7021-32 F, painted a year earlier, to observe whether storage of paints containing high acid oils and zinc oxide would reduce durability due to excessive zinc 3oap formation, du Pont Pigment Division in 1943 recommended that acid values for the composite vehicle above 13 should be avoided. While the bodied oils in this series had individual acid values approaching 22, they could be used only as a portion of the binder, bo that the acid value of the composite vehicle never exceeded 9.
0007-SWP-044565
0007-SWP-000113934
-19-
#97 - Cant.
The teste Indicate that package stability ia excellent. In both the white and cream painta, there are no differences in performance except for the minor variations noted:
(48) (506) (215) S 70 - 0K0
Acid Value Bodied Oil
11.2 21.7
6.5
2.0
Composite Acid Value
5.5
9.0 4.0
2.7
Remark^ Normal failure.
Slightly greater failure Normal failure.
Slightly low in tint retention.
50/60 (48)/S 70-0K0 6.6
4.1 Normal failure.
4. Exposures 10650-5 F, C were examined after 1-1/2 years (two summers) at Chicago and Florida, vertical south. All are 2-coat work on cedar beveled siding with Bax 450 Undercoater. The basic formula is Rex 471 SUP Close White of 9-14-45, a 50/50$ R-200/FT titanium type. The test involves substitution of certain special oils, with results as follows:
(a) SB-1172, Dow Resin X-480, a 15$ styrene modified linseed used for all oil. Good durability. Although most challgr, it is rather dirty at Chicago.
(b) ADM 75-5 oil, containing cyclopentadiene, Y and 2-4 viscosities, all except 12 gallons of (2) being replaced. Least satisfact
ory of group* Clean, but serious checking and cracking.
(c) Wolin IS oil, presumably a polyallyl ester of dehydrated castor fatty acids. Used for all oil and for (2) only. Good dura bility. Slightly dirty at Florida. Brush narks too prominent when used 100$.
5. A progress report was written on two series of exposures, 10927-52 F, C and 10945-65 F, C, covering several tests of soya oils in Rex 471 SUP Gloss White, related closely enough in all respects to he summarised together. All tests are on cedar beveled siding, primed with Rex 450 Undercoater tinted gray to emphasize erosion, and have been exposed 12 to 14 months at Florida and Chicago, vertical south. Some tint
tests are included, but with no significant results to date. The two reports dated December 16, 1947, contain many details too numerous to include here. In general, however, there are remarkably few differ ences in performance cmong these paints, including the regular guidee. The materials tested ore listed below, with notations where there are
any significant variations from normal.
0007-SWP-044566
0007-SWP-000113935
i#S97L.-~ sCaoaatt..
-bo-
P.P.C. Soya (Selected) #500, inl body, replacing (s) only.
Possible tendency to check, qjuite noticeable brush caries.
CVR-569 Linseed (44) brought, to (4B) body. This end all follow ing are substituted for the usual 19 gallons of (46). Brush marks slightly more than overage.
CVR-570 F.P.G. S0-500 soya brought to (48) body.
CVR-571 Soya (1275) plus catalyst, at (48) body.
CV-7027 Bis soya, cir-blown to (48) body. Probably least free chalking.
CV-70Z8 SO8-treetad soya, at (48) body.
CV-7029 Catalyst-bodied soya, at (48) body.
CVR-5B4 80/2055 (l275)/tung oil, blended at (48) body. Least checking tendency (microscopic so far) of the last four items.
While differences in dirt collection are small, in the earlier stages CVR-571 shows the greatest dirt collection, and linseed (48) the least. Ihe Bis soya usually is the best of the soya oils in clean-up, with the soya-tung combination oil close.
0007-SWP-044567
0007-SWP-000113936