International Journal of Fatigue, volume 28, issue 5-6, pages 530-539

Multiaxial fatigue life prediction for a natural rubber

Nicolas Saintier 1
G. Cailletaud 2
R. Piques 2
1
 
Laboratoire Matériaux Endommagement Fiabilité et Ingénierie des Procédés
2
 
Centre des Matériaux
Publication typeJournal Article
Publication date2006-05-01
scimago Q1
SJR1.528
CiteScore10.7
Impact factor5.7
ISSN01421123, 18793452
General Materials Science
Mechanical Engineering
Industrial and Manufacturing Engineering
Mechanics of Materials
Modeling and Simulation
Abstract
This study deals with the fatigue crack initiation under multiaxial non-proportional loadings in a natural rubber. Push–pull, torsion and tension-compression with a superimposed static torsion fatigue test results are presented. A short presentation of some important features concerning short fatigue crack growth is given. Two fatigue crack criteria are proposed, the first one based on the first and second invariant of the Cauchy stress tensor, the second, based on the micromechanisms of crack initiation, consist of a critical plane approach under large strain conditions using a micro to macro approach. The second criterion was found to give the best results, by predicting the fatigue lifes, crack orientations and location, even in cases with internal crack initiation.
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