An Overview of the Fatigue of Polychloroprene Rubber

Author:

Poisson Jean Louis1,Lacroix Florian1,Méo Stéphane1,Berton Gaelle1,Ranganathan Narayanaswami1

Affiliation:

1. Université François Rabelais de Tours

Abstract

Some fundamental studies carried in a synthetic rubber - Chloroprene CR29 are presented in the first part of the paper. A critical analysis of test results, shows that an energy based approach permits the determination of fatigue lives in this material. This aspect is further enhanced by biaxial fatigue tests in the same material. These tests covering a life range from 10000 to 1000000 cycles show that the energy based model is very efficient to describe the fatigue behavior. Some evidence of strain induced crystallization (previously observed in natural rubber) with associated life enhancement at high load ratios is also presented. A comprehensive model based on the determination of the constitutive laws taking into account the viscoelastic behavior is developed showing excellent correlation with experimental data.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference20 articles.

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2. S.M. Cadwell, Dynamic fatigue life of rubber, Ind. Eng. Chem. 12 (1940), 18 – 23.

3. J.H. Fielding, Flex life and crystallization of synthetic rubber, Ind. Eng. Chem. 17 (1944), 1020 – 1028.

4. N. Saintier, G. Cailletaud, et R. Piques, Multiaxial fatigue life prediction for a natural rubber, Int. J. Fat. 28 (2006), 530 – 539.

5. A. Bennani, Elaboration, comportement et durée de vie du caoutchouc naturel renforcé de silice, PhD Thesis, Ecole nationale des mines de Paris (2006).

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