Document REx7xNDx3jxGX9B36161NvwB
i^~RCEIVED
I NO ' 23 1966
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STATUS REPORT
VINYL CHLORIDE RESINS
PERFORMANCE CHARACTERISTICS OF ETHYLENE
MODIFIED VINYL CHLORIDE AND CONVENTIONAL POLY (VINYL CHLORIDE) RESINS
Author:
P.T. McCoy A.W. Conkling
Supervisor: W.H. Bauer
Date:
November 7, 1966
Project No: 224A90
File No:
SUMMARY
A comparison of the unfilled compound physical and processing characteristics of ethylene modified vinyl resins QSOM-7 Blend 3 and QXOM-7 QEX 1197 and a conventional homopolymer QYTQ-7 has been completed. The differences in ethylene levels:
QYTQ-7 QXOM-7 QEX 1197 QSOM-7 Blend 3
0 percent 1.4 percent 0.9 percent
shows that:
1. QEX 1197 (1.4 ethylene) requires 5 PHR (11 percent) less of FLEXOL plasticizer DOP than does QYTQ to achieve a Durometer A Hardness of 80; Blend 3 (0.9 ethylene) requires 2.5 fflR (5 percent) less.
2. The amounts of FLEXOL plasticizer DOP required to achieve constant melt characteristics are:
QYTQ QEX 1197 Blend 3
- 40.5 PHR - 32 PHR - 38.5 PHR
3. The. 1.4 percent ethylene level for a QSOM type resin is thus recommended to provide a more unique product to the calendering and flooring fields than that offered by the 0.9 percent level.
Union Carbide Corporation - Chemicals Division Research and Development Department Tarrytown, New York
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VINYL CHLORIDE RESINS PERFORMANCE CHARACTERISTICS OF ETHYLENE MODIFIED VINYL CHLORIDE AND CONVENTIONAL POLY (VINYL CHLORIDE) RESINS
INTRODUCTION The compound physical properties of QXOM-7 QEX 1197 and QSOM Blend 3
vinyl chloride ethylene resins have been compared to QYTQ in three FLEXOL plasticizer DOP concentrations to assess the influence of different levels of ethylene on processibility and compound physical properties.
DISCUSSION This study is designed to define the influences of both internal and external
plasticization upon the ethylene modified version of OYTQ to assist in establishing product specifications. This report supplements previous findings that QSOM Blend 3 required a lesser amount of external plasticization to achieve the same physical properties of QYTQ. The sample preparation techniques of the previous investigation I1) were utilized in this study which was designed as slightly less intense than the previous evaluation. The data are shown in Table I and Figures 1 and 2.
(1) A.W. Conkling and P.T. McCoy, The Utility of Process - 11 Vinyl Chloride Resins in Flooring Applications, Research and Development Department, Status Report, April 22, 1966.
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The various property and processing performances of QSOM-7 Blend 3 and QXOM-7 QEX 1197 are compared at equivalent plasticization to QYTQ-7 in the following summary table.
Property
Durometer A D
Average Percentage
Greater/Less Than QYTQ-7
QXOM-7
QSOM-7
QEX 1197
Blend 3
- 4 -2 - 21 - 8
Tensile
- 6 -3
Elongation
+3
+4
Apparent Melt Viscosity
- 13 - 1
Fusion Time
- 99 -73
The amount of plasticizer to obtain a Durometer A of 80 (plasticizer efficiency parameter) for these resins, follows:
QYTQ-7
- 47 parts
QXOM QEX 1197 - 42 parts
QSOM Blend 3 - 44.5 parts
This indicates that about 11 percent less plasticizer is required by QEX 1197 and about 5 percent less by Blend 3; QEX 1197 requires about 6 percent less than Blend 3.
The amount of plasticizer required to obtain an apparent melt viscosity of 1,500 meter grams per second (Plasti Corder) for these resins follows:
QYTQ
- 40.5 parts
QXOM QEX 1197 - 32 parts
QSOM Blend 3 - 38.5 parts
This indicates that QEX 1197 requires about 27 percent less plasticizer than QYTQ and that Blend 3 requires about 5 percent less; QEX 1197 requires about 22 percent less than Blend 3.
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- 3The higher fusion torques of QEX U97 as compared to QYTQ and Blend 3 are possibly related to differences in resin-plasticizer solvency characteristics. PTMcCOY:lw Attachments - 1 Table
2 Figures
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Resin QYTQ - 7
QXOM QEX 1197
QSOM Blend 3
TABLE I VINYL CHLORIDE RESINS COMPOUND PHYSICAL AND PROCESSING PROPERTIES
Plasticizer Concentration
phr.
20 40 60
20 40 60
20 40 60
Durometer "A" "D"
98 74 85 40 70 23
95 65 81 30 67 18
96 70 83 35 68 22
Tensile Strength
psi.
3550 3040 2330
3230 2940 2240
3340 2960 2350
Ultimate Elongation
%
200 280 380
190 320 380
200 300 400
Apparent Melt Viscosity m-g/sec C
2400 1540 1050
158 149 144
2210 1360 860
156 148 143
2440 1490 1020
157 149 144
Fusion Characteristics
Time
Temper-
Torque
min.
ature
m-g/sec
4.7 11.4 13.2
114 120 114
4700 2550 1050
1.2 98 6.5 110 7.0 106
5450 3000 1900
2.5 101 7.2 109 7.2 106
2440 1490 1020
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Figure I Vinyl Chloride Resins Unfilled Compound Physical Properties
. - QYTQ o - QXOM QEX 1197 x - QSOM Blend 3
FLEXOL DOP CONCENTRATION PHR
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Figure 2
Vinyl Chloride Resins Unfilled Compound Riysical Properties
- QYTQ o - QXOM QEX 1197 x - QSOM Blend 3
FLEXOL DOP CONCENTRATION PHR
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DISTRIBUTION
Dr, F.E. Bailey Mr. W.H. Bauer Mr. F.D. Dexter Mr. D. L. Engle Mr. J.F. Erdmann Mr. C.R. Field Mr. N.R. Gimber Mr. D.E. Richardson Mr. J.R. Wilkinson Mr. E.R. Weidlein, Jr. Mr. R.N. Wheeler Dr. N. L. Zutty Information Retrieval
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