Document ZJ43vmkbOXXmOKBRd4KzE4ard
BUSINESS CONFIDENTIAL
PROJECT REPORT
RECEIVED OEC 4 1967
R. N. Wheeler
SUSPENSION VINYL RESINSSCALEUP STATUS OF ETHYLENE-MODIFIED
DRYHLEND RESINS
author:
Dean E. Richardson
SUPERVISORi Dr. F. E. Bailey, Jr.
datei November 29, 1967 project no.i 347 b 10 pile mo.i dk-02
SUMMARY R, and D. studies showed that the addition of a small amount of ethylene to dryblend FVC resins for calendering and extrusion
resulted in a substantial improvement in dryblend time without apparent effect on melt properties. Since this technique yielded dryblend times at least as good as, and in most cases better than any competitive dry blend FVC resin, it was agreed with operating personnel that scaleup runs of rj 50,000 lb. would be made, adding ethylene to four dryblend FVC types: QYTQ-7, QYSC-7> QYSL-7 and QSAN-7. The first three mentioned were for calendering use, while the fourth was intended primarily for wire and cable coating. The ethylene concentration required was approximately 0.5'jfe by the old standard, or 0.9-1.3# by Dr. Geo. Potter's new Parr bomb standards.
The above-mentioned scaleup runs are now complete. Resin pro perties in all cases were approximately as predicted, and the resins so produced are considered suitable for sampling to selected customers except for the modified QY5C-7* in which case the amount of ethylene added was insufficient. Analyses are shown, along with typical unmodified FVC analyses for comparison.
Bearing in mind recent quality control analyses of leading competi tive resins, the data in the tables show that for the first time UCC has proved manufacturing capability to produce a line of dryblend-type resins with dryblend times second to none in the industry. Exploitation of this advantage awaits marketing decisions as to pricing and initial potential customers.
INTROHJCTION Earlier R. and D. studies on the so-called "0" resins (vinyl chloride/ethylene copolymers) showed that dryblend times were
improved substantially by the ethylene, but that melt viscosities were also affected. Marketing personnel in the Calendering, Flooring and Records Market Area felt that a significant improvement in dryblend times for UCC standard dryblend-type FVC resins must be made to maintain or improve competitive posi tion. R. and D. studies showed that this could be accomplished by the addition
ethylene (0.9-1.5?) by Dr. Potter's new standards) without significantly affecting melt properties.
RESEARCH AND DEVELOPMENT DEPARTMENT CHEMICALS AND PLASTICS
UNION CARBIDE CORPORATION
TEXAS CITY, TEXAS
ucc `#1 726
2
DISCUSSION The 50,000 lb. scaleup runs for the four ethylene-modified resins mentioned above are discussed in the chronological
order in which the scaleups were carried out.
QYSL-7
This high-viscosity FVC, sold only to Ford, was scaled up first in ethylene-modified form because of an immediate need to counter a competitive resin threat at Ford. Ford has evaluated a sample of Blend B-78, and was so favorably impressed that they have re quested that all future QYSL-7 deliveries be equal to Blend B-78. Marketing and Operating personnel plan to comply. Properties are shown in Table I. Ethylene content could be increased slightly without harming melt properties if further incremental dryblend improvement is needed.
QYSC-7
The ethylene-modified QYSC-7 was scaled up in late August, 1967, the resin being collected and packaged as Blend B-83. Unfortun ately, the amount of ethylene Introduced was not enough to sig nificantly affect the dryblend times, so while Blend B-85 dryblends faster than typical QYSC-7> it is no better than selected blends of top-quality QYSC-7. Properties of the resin are shown in Table II. No further scaleup efforts are planned for ethylene-modified
QYSC-7 unless Marketing can document a specific customer need.
Q.YTQ-7
Ethylene-modified QYTQ-7 was scaled up early in November, 1967. Resin properties are shown in Table III, and were as predicted. It was originally planned to offer this resin for Ford's general purpose business, but price weakness caused a change in these plans. Marketing personnel are considering the best application for offer ing this improved resin.
QSAN-7
The ethylene-modified QSAN-7 was scaled up In mid-November, 1967, and was double-washed in the same manner as normal QSAN-7* in order to obtain good electricals. Properties were as predicted,
and Wire and Cable personnel are considering the possibility of offering this resin to the two wire coating firms selected as initial marketing targets. Properties are shown in Table IV. Electrical resistivity can be improved by reducing the sodium bicarbonate in the recipe.
CONCLUSIONS 1. The use of small amounts of ethylene in the recipe for dryblend vinyl resins provides UCC a line of products
with dryblend performance second to none in the field. Furthermore, melt properties are not significantly affected at this ethylene level.
2. Maximum autoclave pressures generated at the levels men tioned above are low enough that the resins can be made
in any of the existing suspension autoclaves at Texas City,
3. Autoclave productivities, in terms of lbs, of resin per reaction hour for the ethylene-modified resins are es
sentially the same as for their unmodified counterparts.
Inasmuch as manufacturing capability for the ethylenemodified resins has been conclusively demonstrated, the burden of the further effort to capitalize on this breakthrough now rests with marketing personnel.
UCC 041727
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BIBLIOGRAPHY 1. Memorandum "Production Run of QYSC-7 Resin", J. C. Schlichter
to N. A. Gimber, September 13> 1967. 2. Memorandum "Initial Production Run QYSL-7 with Ethylene",
W. D. Bush to N. A. Gimber, November 20, 1967. 3. Memorandum "Scale-Up Run of QYSL-7 With Ethylene", J. C. Schlichter
to N, A. Gimber, September 8, 1967.
Dean E. Richardson
UCC
041728
TABLE I ETHYLENE-MODIFIED QYSL-7
Screen Analysis, <f> through 40 mesh 60 " 60 "
100 " 140 " 200 "
Median particle size, microns
Heating loss, $
Inherent Viscosity
Contamination Rating
Apparent Density, lb/cf
ASTM Plasticizer Sorption, pphr
Dryblend time, min./C
FORD dryblend time, min./"C
Dry resin flow, sec.
ICMT
Fisheyes, 17.5 mil at 4 min. 2_q it n it n 10 " " 6 "
Clear HRP
Ethylene, % ***
Brabender melt viscosity, ** m-gm./C
Blend B-78
Typical QY5L-7*
100 99 76 29 5 1
l6i
0.4
1.57 2
29
114
7.6/85
15.0/82.5
3.1
90
0 ill
1
2
0.41 (0.95)
1820/173
100 1
178
0.4
1.35-1.37 2
31 -
9.8/85
-
2.8
96
0 100
5 2
-
1750-l800/l72
* Taken from last 10 blends ** Ford formulation *** Value in parentheses is taken from new Parr bomb standards determined
by Dr, George Potter.
UCC 041729
TABLE II ETHYLEME-MODIFIED QYSC-7
Screen, % through 40-mesh 60 " 80 "
100 " 140 " 200 "
Median particle size, microns
Heating loss, %
Inherent Viscosity
Contamination rating
Apparent density, lb/cf
Dryblend time, min,/"C
Dry resin flow, sec.
ICMT
Fisheyes, 17.5 mil/lO mil
Clear HRP
Ethylene, <jt *++
Brabender melt viscosity, *** m-gm./C
Blend B-83
Typical Q.YSC-7*
100 99 92 60 17 9
138
0.2
1.19 1
30
7.8/85
3.3
103
0/5
2
0.26 (0.60)
1550/167
100
-
8
146
0.3
1.15 2
31 8.2/85 3.4
99 0/45 2
1500/166
* Taken from last 10 blends ** Ford formulation *** Figure In parentheses Is approximation of Parr bomb determinations by
Dr. George Potter.
UCC
041 730
TABLE III ETHYLENE-MODIFIED QYTQ-7
Screen, % through 40 mesh 60 " 80 "
100 " 140 " 200 "
Median particle size, microns
Heating loss, %
Inherent Viscosity
Contamination rating
Apparent density, lb/cf
Dryblend time, min/*C
Dry resin flow, seconds
ICMT
Respro fisheyes, 17.5 mil/lO mil
Clear HRP
Ethylene, ***
Brabender melt viscosity, m-gm/C **
Blend B-330
Typical Q.YTQ-7*
100 100
94 62 15
2
158
0.1
0.96
1
52
4,8/85
5.0 110
0/19
2
0.52 (1.25)
1940/155
100
-
-
3
137 0.2-0.3 0.96-0.99
1-2
33-34
6.4/85
3.4 102 0/20
2
-
2000-2100/155
Values taken from last 10 production blends
** UCC Method WC-327A *** Figure in parentheses is an approximation by Dr. George Potter's
Parr bomb technique.
UCC 041731
TABLE IV ETHYLENE-MODIFIED OSAN-7
Screen, through 40 mesh 60 " 80 "
100 " 140 " 200 "
Median particle size, microns
Heating loss, %
Inherent Viscosity
Contamination rating
Apparent density, lb/cf
Dryblend time, min/C
Dry resin flow, seconds
ICMT
Respro fisheyes, 17.5 mil/10 mil
Ethylene, % ***
Resistivity, $ of std.
Brabender melt viscosity, m-gm/C **
Blend B-lll
100 96 78 49 10 2
151
0.5 1.06 2
35 5.2/82
3.8 111
0/3
0.7 (1.4)
65 1300/161
Typical OSAN-7*
100
-
2-3 148 0.2 1.01-1.05 2 33 6.4/84 3.1 106 0/35
70 1510/161
* Taken from last 10 blends ** Ford formulation *** Figure in parentheses is an approximation of results by Dr, George Potter
Parr boob technique.
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041732
DISTRIBUTION
Texas City:
Mr. R. M. Arnold Mr. J. H. Barrett Mr. W. D. Bush Mr. R. J. DeLuca Mr. J. F. Erdmann Mr. J. H. Field Mr. N. A. Gimber Mr, R. J. Greer Mr. J. L. Hockersmith Mr. F. L. Johnson Mr. K. L. Meisner Mr. A. A. Peterson Mr. L. G. Peyton
South Charleston: "M?T"r. n. Wheeler
Technical Center:
Dr. F. E. Bailey, Jr. Dr, J. J, Brezinski Dr. J. E. Glass Dr. W. R. Manning Dr. C. W. MeGary Mr. J. J. Smith Information Retrieval
Tarrytown
* *
Mr. W. H. Bauer Librarian
Bound Brook;
Mr. A. J. Costantin Mr. F. A. DeMelio Mr. G. G* Himmler Mr. R. J. Stockman Dr. N. L. Zutty
New York Office:
Mr. G. P. Bigelow Mr. C. R. Field Mr. J. A. Francis Mr. C. W. Naylor Mr. J. W, Schilling Mr, J. R. Wilkinson
UCC 041733