This paper introduces an analysis method,which combines the crack fatigue prediction theory and rubber elastic structure optimization,to optimize the structure of a rubber bushing. Using stress in rubber as the optimization parameters,the method can predict fatigue life of the rubber bushing by applying crack energy density. In summary,using the fatigue result,this new analysis method can predict rubber fatigue life and provide optimized structure of rubber parts. This combination of the crack fatigue prediction theory and rubber elastic structure optimization ensures the convenience of engineering application and provides a guidance to reduce rubber structure developing time
Fatigue life prediction and evaluation are the key technologies to assure the safety and reliability...
The usage of rubbers has always been so important, especially in automotive industries. Rubbers have...
Abstract: Recently, the demand to acquire and improve durability performance has steadily risen in r...
In this paper, the problem of the design of a rubber component for automotive application is discuss...
This paper investigates the effects of variable amplitude loading conditions on the fatigue lives of...
International audienceFrom an engineering point of view, prediction of fatigue crack nucleation in a...
Rubber components subjected to fluctuating loads often fail due to the nucleation and growth of defe...
AbstractTo some extent, continua can no longer be considered as free of defects. Experimental observ...
This paper investigates commonly used approaches for fatigue crack nucleation analysis in rubber, in...
This paper details an advanced method of continuous fatigue damage prediction of rubber fibre compos...
This dissertation is concerned with the multiaxial fatigue behavior of rubber related to pneumatic t...
International audienceThis study deals with the fatigue crack initiation under multiaxial non-propor...
Rubber components have broad applications in industry and they often operate under cyclic loading co...
Crack nucleation and crack growth approaches for analyzing the fatigue behavior of rubber components...
Rubber components subjected to fluctuating loads often fail due to the nucleation and growth of defe...
Fatigue life prediction and evaluation are the key technologies to assure the safety and reliability...
The usage of rubbers has always been so important, especially in automotive industries. Rubbers have...
Abstract: Recently, the demand to acquire and improve durability performance has steadily risen in r...
In this paper, the problem of the design of a rubber component for automotive application is discuss...
This paper investigates the effects of variable amplitude loading conditions on the fatigue lives of...
International audienceFrom an engineering point of view, prediction of fatigue crack nucleation in a...
Rubber components subjected to fluctuating loads often fail due to the nucleation and growth of defe...
AbstractTo some extent, continua can no longer be considered as free of defects. Experimental observ...
This paper investigates commonly used approaches for fatigue crack nucleation analysis in rubber, in...
This paper details an advanced method of continuous fatigue damage prediction of rubber fibre compos...
This dissertation is concerned with the multiaxial fatigue behavior of rubber related to pneumatic t...
International audienceThis study deals with the fatigue crack initiation under multiaxial non-propor...
Rubber components have broad applications in industry and they often operate under cyclic loading co...
Crack nucleation and crack growth approaches for analyzing the fatigue behavior of rubber components...
Rubber components subjected to fluctuating loads often fail due to the nucleation and growth of defe...
Fatigue life prediction and evaluation are the key technologies to assure the safety and reliability...
The usage of rubbers has always been so important, especially in automotive industries. Rubbers have...
Abstract: Recently, the demand to acquire and improve durability performance has steadily risen in r...