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Serial No. KN-69-6
Copy N^.6
E. I. DU PONT DE NEMOURS & COMPANY
256 VANDERPOOL STREET NEWARK, NEW JERSEY
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I JACKSON LABORATORY FILE ROOM
f,M NEWARK PLANT PIGMENT COLOR RESEARCH REPORT
\3 ^ HUMIDITY RESISTANCE - "MONASTRAL" MAROON
Pariod Covorad June - August, 1968 (Part time)
FILE: 223.91
DATE: 3/3/69
NJ 14071
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KN-69-6
1. Numerical File 2. Research Office File, Newark 223.91 3. Newark Library File 4. M.Hunt/E.Gonick, Pigments, Wilm. 5. W.S,Struve/A.A.Brizzolara 6. F. F.Ehrich/M.H.Gyorgy/B.H.Perkins/Newark Library 7. A.R.Harike/J.Jackson/E.E.Jaffe/Newark Library 8. P. J.Monahan, Newark (Vital Records) 9. N.G.Fisher, Central Research, Wilmington 10. R.H.Wetzel, Newport 11. J. F.Maurer/J.W.Minnich/Colors Research File, Newport 12. H.Matrick 13. Extra 14. Extra 15. Extra 16. Extra 17. Extra
NEWARK PLANT
PIQ-IENT COLORS RESEARCH REPORT
SOBJECT: HUMIDITY RESISTANCE - "MONASTRAL" MAROON
PERIOD COVERED: June - August, 1968 (Part Time)
Date Submitted: 2/18/69
APPROVED BY: 1. *.
~ate Released: 3/3/69
ABSTRACT Iron pyrophosphate (10%) and aluminum benzoate (50%) were the only extenders which improved the humidity resistance of "Monastral" Maroon, RT-792-D, in acrylic lacquer films over an unextended,
well-washed toner. Commonly used extenders such as nickel carbon ate and calcium Staybelite showed deleterious effects. Water soluble impurities likewise showed deleterious effects. Degree
of dispersion was not an important factor.
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TABLE OF CONTENDS
I. INTRODUCTION AND OBJECTIVES II. SUMMARY AND CONCLUSIONS III. PATENT STATUS IV. DISCUSSION
A. Effect of Impurities B. Effect of Extenders C. Degree of Dispersion V. APPENDIX A, Office Trade Report, J.A.Lamiet, 5/9/68 B. Patent Proposal CP-98
Page 1 1 1 1 2 3 4
5 6
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I. INTRODUCTION AND OBJECTIVES
In May, 1968, F. and F.,Flint, reported (see Appendix A) that RT-792-D, "Monastral" Maroon, had failed General Motors' humidity test. This put the use of RT-792-D and other quinacridones in 1969 automotive finishes in jeopardy of being discontinued. The object of this investigation was to determine the causes of poor humidity resistance of RT-792-D. The factors under suspicion were impuri ties, pigment extenders, and degree of dispersion.
It. SUMMARY AND CONCLUSIONS
Iron pyrophosphate (10%) and aluminum benzoate (50%) have been found to have a beneficial effect upon the humidity resistance of RT-792-D. This information has been transmitted to F. and F., Flint.
All other commonly-used extenders have varying deleterious effects upon humidity resistance, the worst being calcium Staybelite. Likewise, nickel carbonate, alumina hydrate, and blanc fixe appear to be harmful. Water-soluble impurities have a deleterious effect. Alcohol-soluble impurities (Emcol P-1059) do not effect humidity resistance.
Degree of dispersion is a minor factor or not important at all in humidity resistance performance.
III. PATENT STATUS
A patent proposal (CP-98) has been submitted on humidity resistance improvement of acrylic lacquer films by iron polyphos phates (See Appendix B, p. 6 ),
IV, DISCUSSION
In this study, pigments were evaluated as to their contribution to humidity resistance of a lacquer film by first 2-roll milling with cellulose acetate butyrate resin. The chips were reduced in an acrylic lacquer formula containing the plasticizer benzyl butyl phthalate and solvents. Masstone panels were prepared by drawdown. The panels were baked, then exposed to 150F. and 100% humidity for 16 hours.
It was found (B.J.Godfrey) that humidity resistance behavior is dependent on the bake temperature. This can be explained in terns of the degree of plasticity of the film. K. Batzar* has shown that water is transported through the film by osmotic pressure effects. This transport is related to the plasticity or specifically the glass-transition temperature. When this tempera ture is below the humidity test temperature, 150F. water transport occurs readily. The glass-transition temperature increases with decreasing plasticizer content. During the baking cycle, the partially volatile plasticizer benzyl butyl phthalate is partially lost, thus effecting humidity resistance.
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Two bake ovens have been used which deliver films of different
plasticities, a 275F. temperature bake on one oven liberates a considerable amount of plasticizer and a ,,285P. " bake which in effect spends little time at 285F. and, therefore, liberates less plasticizer* The latter cycle gives a film which is more sensitive to humidity and to factors which effect humidity resistance.
A. Effect of impurities
The RT-792-D rejection by F, and F. was complicated by a change in plant formula made in 1966 which eliminated the final washing of this product, A temporary standard or so-called shipping lot was based on this procedure. Table I shows the result of humidity resistance tests vs. other plant materials which were
washed,
TABLE I
HUMIDITY RESISTANCE OF PLANT LOTS OF RT-792-D
Lot Wash Status 275F
SL89679 No final Tem.Std. PS97569 Final Prev." 90558 Final Prop." 54749 Final Pres,
plant
prod.
poor good
good good
"285 "F" Bake
poor poor poor
% Water Soluble Matter
1.1 0.65 0.48 0.45
Electrical Resistiv*t
-n.
1,500 4,800 4,000 10,500
It is apparent that to maintain good humidity resistance at 275F. bake, RT-792-D requires press washing as opposed to centerfeed pressing Which precludes washing. Normal plant product washed to 4000-/t appears to give reasonably acceptable performance at 275F. bake. Extracts of the unwashed SL-89679 showed presence of Na+, Cl", and Ca which would be expected from the final calcium Staybelite laking. Further clarification of the effect of water and alcohol-soluble impurities was obtained by further washing a "Monastral" Maroon presscake, RT-801-P, which had been plant washed to 4800-H- , to 20,000-0- in the laboratory using dis tilled water. A third sample was prepared by washing the 20,000-0presscake with alcohol 2B followed by washing with distilled water
to remove the alcohol* The presscake was dried directly and not extended before evaluation. Humidity resistance results are summarized in Table II. A rating system was used in which a 10 rating represents no change and a 0 rating represents total film destruction in which gloss is completely destroyed as is color strength.
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TABLE II
EFFECT OF IMPURITIES ON HUMIDITY RESISTANCE OF UNEXTENDED "MONASTRAL" ,_____________ MAROON
Sample
Final Wash Resistivity
Humidity Resistance
275F .
,,285F "
Plant washed Lab HsO washed
Lab alcohol washed
4,800 20,000
60,000
97 10 8
10 8
Thus, it appears that at a 4,800 ohm wash, sufficient watersoluble impurities are present to cause some downgrading of humidity resistance. Removal of alcohol-soluble impurities such as the anionic surfactant Emcol P-1059 does not further improve
humidity resistance.
B. Effect of Extenders
The previously discussed 20,000 ohm sample was treated with various extenders most by co-pulverization but, in some cases, by in situ precipitation. In these cases, the samples were washed to 8,000 ohms. Results are summarized in Table 111.
TABLE III
EFFECT OF EXTENDERS ON THE HUMIDITY RESISTANCE OF "MONASTRAL11 MAROON
Method of
Extender
% Combination
None
cII alcium SM taybelite
10 10
Precipitated Co-pulverized
Nai ickel cifarbonate
10 Precipitated 10 Co-pulverized
Barium sulfate Alumina hydrate
10 10
II
Aluminum benzoate 50 Precipitated
Iron pyrophosphate 10 Co-pulverized
Humidity Resistance
275F.
"285F"
10 8
90
90
86
7 0.5
9.5 6
10 3
10 9
9.5 10
Note that all extenders except iron pyrophosphate and aluminum benzoate downgrade humidity resistance. An interesting fact is that calcium Staybelite performs well at 275F, but leads to total film destruction at"285F. ". Thus, calcium Staybelite is a highly undesirable extender for pigments in automotive finishes. It is also significant that precipitated niche! carbonate, although not totally satisfactory, performs better than dry-pulverized nickel carbonate. This suggests that commercial nickel carbonate contains
deleterious water-soluble impurities.
To further exploit the iron pyrophosphate lead, the latter was dispersed separately in CAB, then reduced and added to "Monastral" Maroon dispersions. These results are summarized in Table IV.
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TABLE IV
EFFECT OF 10% IRON PYROPHOSPHATE ON HUMIDITY RESISTANCE OF VARIOUS ______________________ "MONASTRAL" MAROON SAMPLES
Sample
20/000 washed no extender +Fe4(Pa07)3
SL-86979, unwashed RT-792-D " " " + Fe4(Pa07)3 55865, 5000 RT-792-D, no CaSx
" " + Fe4(Pa07) 3
Humidity Resistance
275F.
"28SF.
9.5 7.0
9.0 9.5
00
3 1.5
9.5 6.0
9.5 9.0
It has also been demonstrated that Fe4(Pa07)s improves the humidity resistance of clear films. Thus, iron pyrophosphate appears to improve humidity.resistance regardless of the purity of the RT-792-D used. Nothing is known about the mechanism by which iron pyrophosphate operates. It is possible that it somehow lowers film plasticity.
C. Decree of Dispersion
Several experiments were run to try to determine if degree of dispersion had an effect on humidity resistance. In all cases, results showed degree of dispersion was not important. In one experiment, a sample was chipped with internally and externally added QAAF. In another, ball-milled, sand-milled, and CAB-chipped "Monastral" Maroon were compared. In a third experiment, sand milling was carried out for varying lengths of time. In all cases, 20,000 ohm"Monastral" Maroon without extender was used. Again, no major differences in humidity resistance could be detected as a
result of varying dispersion.
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VH.Baird, Pigm. Wilm. J.E.Ki'amer.,. Pigm. Wilm. S3. Gorman/L. F,Andrews, PgnWllm0 P.D.Graham,. Pigm. Wilm.
R.H.Zabel, Plgm. Wilm, M.runt/S.Gcrtok,. Pigm. Wilm. Pignr.nts Wilmington, Pile
W0PSpengeman/K,,B. Claris C ,, R,
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OFFICE TRADE REPORT
F&F - FLINT
REPORTED BY: I. A, Lamiet. . /
DATE OF CALL; 5/9/6$
/; /
V
Wes Bullock telephoned to report a number of quinaericlone
pigments failed the General Motors' humidity test (my office trade report, 5/7/68). These pigments are in order of increasing stability to the humidity test: " Monastxal Maroon RT-792-D;
Monastral Violet R,, RT-733-D; Monastral Violet R, RT-Bl9-Dj and Quincio Violet RV-6902-D. RT-819-D and RV-6902-D are about equal and are considered possibly borderline in acceptability.
Thiofast Red Toner MV-6600 and Thiofast Red Lake .KV~d 655 apparently pass this test. The test is now reported to be run " for only 16 hours, rather than the 24 hours previously reported. The temperature of 15GF. and 100$ relative humidity conditions remain unchanged. Bullock indicates that the '69 maroon basically formulated with RT-792-D and the solid red formulated with RT-733-D* molybdate orange, and .iron oxide fail this test. Accordingly, the consumption of quin&cridones for General Motors* automotive finishes for the 1969 model year is currently in Jeopardy unless an answer is found quickly. Chestnut Run has Just placed an order for equipment to run this test; meanwhile, Flint has offered us their facilities for any tests that we may wish to run to help resolve this problem,
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CC: W.S.Struve/A.A. Brizzolara
F.F.Ehrich R.D.Nutting, Newport M.Hunt/E.Gonick, Pigts.,Wilm.
Newark, New Jersey February 4, 1969
MISS JANE E. MACRUM Pigments - Newport
PATENT PROPOSAL CP-98
HUMIDITY RESISTANCE IMPROVEMENT OF ACRYLIC LACQUER FILMS BY IRON
___________
POLYPHOSPHATES (PYROPHOSPHATES)
This invention involves compositions of matter consisting of
a mixture of an acrylic thermoplastic lacquer film with a ferric
polyphosphate (pyrophosphate). Such compositions render the paint
film resistant to decomposition by water or water vapor, a property
which is particularly crucial to acceptable performance of auto
motive finishes.
^A typical thermoplastic acrylic lacquer film consists of poly-
methyl methacrylate resin, cellulose acetate butyrate resin, and a
plasticizer. When such film, with or without pigment, is subjected
to heat and water vapor or condensing water, considerable deteriora
tion occurs. The problem is evident on automotive lacquer and is
particularly severe in warm, humid areas of the U. S, Such condi
tions can be simulated and accelerated by various testing devices,
the most commonly type used being the Cleveland Humidity Cabinet.
Here paint films on metal panels are exposed to 100% relative
humidity at elevated temperatures (80~180F.). An acrylic lacquer
film,when exposed to these conditions for a few hours, will develop
a non-uniform hazy, cloudy appearance with accompanying loss of
gloss, so-called "water spotting". As degradation proceeds, the
film will become opaque and lose all reflective ability, A trans
parent film pigmented with a colored toner will become opaque with
accompanying lightening or loss of coloring strength. Use of iron
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CP-98
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February 4, 1969
polyphosphate simply added to the wet acrylic lacquer produces a
film with much superior resistance to humidity degradation. Often
these films show no visible indication of degradation even after 16
hours of exposure in a humidity cabinet at 150F.
Another advantage of this invention relates to the use of iron
polyphosphate as an extender for colored pigments used in acrylic
lacquer systems. Colored toners are commonly produced with 10% of
a colorless transparent material, often an inorganic salt. One
important function that these extenders perform is to allow stan
dardization of tinting strength of the product. Often, they will
serve another function such as improving dispersibility or light
fastness. It has been found these extenders have a deleterious
effect on humidity resistance. Among them are blanc fixe, alumina
hydrate, basic nickel carbonate, and calcium rosinate. Iron poly
phosphate is unique in that it is the only otherwise suitable ex
tender tested that does not have a deleterious effect, let alone a
beneficial effect, on humidity resistance.
To date, we have worked with 10% iron pyrophosphate, A-33-D,
and 90% "Monastral" Maroon toner. This composite pigment was pre
pared by drying RT-801-P and co-pulverizing the two materials. CAB
dispersion was prepared in the Usual manner (described in Example
VII, CP-87). The dry paint film composition consisted of 7.5%
composite pigment or 0.75% iron pyrophosphate.
The following data were obtained by exposing "Monastral" Maroon
with 10% of various extenders in the Cleveland humidity cabinet for
16 hours at 150F. Two different type bake cycles were used. One
type spends most of the time at 275F. A second type "tops out"
late in the cycle at 285F, but the average temperature is effec
tively less than 265F. The latter cycle gives paint films which
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February 4, 1969
are more sensitive to humidity. An arbitrary rating system was used
with 10 designating no change and 0 designating maximum change.
Ret N.B. 1888-30, pp. 64,65,80,81 275F. Bake
M285F. " Bake
No extender
10 8
Ca Rosinate, dry blend
9.0
0.0
Blanc fixe, "
"
9.5
6
Alumina hydrate, dry blend
10
3
Basic Ni carbonate, dry blend 7
0.5
A-33-D
9.5 10
Other workers have confirmed these results since this experi
ment was performed. R. F. White mentions in his Nov. 28 - Dec. 31,
1968 Monthly Summary that A-33-D is the only extender tested which
did not adversely effect humidity resistance of "Monastral" Maroon.
Likewise, C. W Manger mentioned in his Nov. 19 - Dec. 19, 1968
Monthly Summary that "Monastral" Maroon with A-33-D gives better
results vs. a toner control.
PRIOR ART
U.S. 3,074,895, J. Jackson, 1963, claims coating compositions
comprising 10-20% iron polyphosphate with either an alkyd vehicle
(enamel) or oleoresinous varnish. Examples include both alkyd
enamel and nitrocellulose lacquer.
MODIFICATIONS AND EQUIVALENTS
C. W. Manger's work indicates improvements can be made on an
unpigmented lacquer. The invention should be tested with several
pigments. Composition limits and composition of maximum effective
ness have yet to be determined. J. Jackson is doing some work on
variation of the polyphosphate anion composition in addition to
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--
February 4, 1969
varying the cation: Jackson's 3,074,895 disclosed use of both pyro
phosphate and tripolyphosphate. Also disclosed are use of composi
tions containing both sodium and potassium. C. W. Manger has shown
A-33-D to be more effective when washed more extensively.
Variations in the lacquer formula might be considered such as
omitting CAB resin or varying the plasticizer composition. Coverage
might be extended to thermosetting acrylic enamels.
Combining the polyphosphate and pigment could be tried in
several different ways; (1) precipitating iron polyphosphate in
the presence of pigment slurry; (2) co-pulverizing the two materials;
(3) formulating the additive directly into the paint system with
the pigment; and (4) dispersing pigment and A-33-D separately and
combining mill bases.
The acrylic lacquer dispersion can be prepared either by CAB
dispersion, sand milling, or ball milling.
INVENTION RECORD
The first experiment concerning use of A-33-P for humidity re
sistance was begun by H. Matrick on May 14, 1968. The use of this
material as a solution to the humidity resistance problem was con
ceived within about a week of this date by H. Matrick. On May 21,
1968, a work request was written for evaluation of samples in paint.
Paint panels were prepared on June 14, 1968. The following state
ment is taken verbatim from F. F. Ehrich's (H.M.> Monthly Summary
of July 17, 1968, and represents the first written disclosure of
results of evaluation;
"Iron pyrophosphate, A-33-D, has been shown to improve humidity
resistance on a variety of "Monastral" Maroon samples. The
A-33-D was chipped separately, reduced to a mill base and the
latter added in a 10% amount to RT-792-p mill bases. In all
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February 4, 1969
cases where improvement was possible, an improvement was shown.
This included low bake and 275F. bake films and samples with
and without CaSx, and with varying degrees of soluble salts
including the high solubles RT-792-D, SL 86979. This finding
has been transmitted to F and F, Flint. Other systems such as
clear films RT-819-D, "Monastral" Violet, "Afflair", and
"Krolor" are being treated with A-33-D to determine its
effect on humidity resistance. Evaluation in TAE-3 with
RT-792-D and A-33-D is also underway."
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H. MATRICK RESEARCH DIVISION
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