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Volumn 119, Issue 1, 2011, Pages 419-437
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A three-function numerical model for the prediction of vulcanization- reversion of rubber during sulfur curing
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Author keywords
finite element method; Fourier's law of heat conduction; reversion; rheometer curve fitting; sulfur vulcanization
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Indexed keywords
COMPUTATIONAL EFFORT;
CONTROLLED TEMPERATURE;
CURE RATE;
CURING TEMPERATURE;
FEM SIMULATIONS;
FINITE ELEMENT SOFTWARE;
FOURIER'S LAW;
GLOBAL BEHAVIORS;
LABORATORY TEST;
MAXIMUM VALUES;
NUMERICAL MODELS;
OPTIMAL SOLUTIONS;
OSCILLATING DISK RHEOMETERS;
OUTPUT PROPERTY;
QUANTITATIVE ASSESSMENTS;
REVERSION;
RUBBER COMPOUNDS;
STATE OF CURE;
SULFUR CURING;
SULFUR VULCANIZATION;
THERMAL TREATMENT;
TWO-STEP APPROACH;
COMPUTER SOFTWARE;
CURING;
CURVE FITTING;
FORECASTING;
HEAT CONDUCTION;
MECHANICAL PROPERTIES;
RHEOMETERS;
RUBBER;
SULFUR;
TENSILE STRENGTH;
THERMOANALYSIS;
VULCANIZATION;
FINITE ELEMENT METHOD;
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EID: 78649439733
PISSN: 00218995
EISSN: 10974628
Source Type: Journal
DOI: 10.1002/app.32670 Document Type: Article |
Times cited : (44)
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References (44)
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