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  HomeContents of Chinese Journal of Mechanical Engineering (English Edition),2005 No.1LIFE PREDICTION APPROACH FOR RANDOM MULTIAXIAL FATIGUE

Wang Lei

 

Wang Dejun

School of Mechanical Engineering
and Automation,
Northeastern University,
Shenyang 110004, China

 

 

LIFE PREDICTION APPROACH FOR RANDOM MULTIAXIAL FATIGUE*


Abstract: According to the concept of critical plane, a life prediction approach for random multiaxial fatigue is presented. First, the critical plane under the multiaxial random loading is determined based on the concept of the weight-averaged maximum shear strain direction. Then the shear and normal strain histories on the determined critical plane are calculated and taken as the subject of multiaxial load simplifying and multiaxial cycle counting. Furthermore, a multiaxial fatigue life prediction model including the parameters resulted from multiaxial cycle counting is presented and applied to calculating the fatigue damage generated from each cycle. Finally, the cumulative damage is added up using Miner’s linear rule, and the fatigue prediction life is given. The experiments under multiaxial loading blocks are used for the verification of the proposed method. The prediction has a good correction with the experimental results.

Key words: Multiaxial fatigue  Random loading  Life prediction  Critical plane  Cycle counting

 


* This project is supported by National Natural Science Foundation of China (No.59775030). Received January 22, 2003; received in revised form August 31, 2004; accepted December 2, 2004

 

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