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Local stress–strain field intensity approach to fatigue life prediction under random cyclic loading
Authors:De-Guang Shang  Da-Kang Wang  Ming Li and Wei-Xing Yao
Affiliation:

a College of Mechanical Engineering and Applied Electronics Technology, Beijing Polytechnic University, 100022, Beijing, People's Republic of China

b Department of Aircraft, Nanjing University of Aeronautics and Astronautics, 210016, Nanjing, People's Republic of China

Abstract:According to the characteristic of the local behavior of fatigue damage, on the basis of stress field intensity approach, a theory of local stress–strain field intensity for fatigue damage at the notch is developed in this paper, which can take account of the effects of the local stress–strain gradient on fatigue damage at the notch. In order to calculate the local stress–strain field intensity parameters, an incremental elastic-plastic finite element analysis under random cyclic loading is used to determine the local stress–strain response. A local stress–strain field intensity approach to fatigue life prediction is proposed by means of elastic-plastic finite element method for notched specimens. This approach is used to predict fatigue crack initiation life, and good correlation was observed with U-shape notched specimens for normalized 45 steel.
Keywords:Random loading  Elastic-plastic finite element analysis  Local stress–strain field intensity  Fatigue damage  Life prediction
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