固体力学学报(英文版)2024,Vol.37Issue(5) :673-684.DOI:10.1007/s10338-024-00472-w

Probabilistic Fatigue Life Framework of Notched Specimens Based on the Weibull Distribution Under Multiaxial Loading

Jie Wang Jianhui Liu Jumei Lu Yingbao He Xuemei Pan Ziyang Zhang
固体力学学报(英文版)2024,Vol.37Issue(5) :673-684.DOI:10.1007/s10338-024-00472-w

Probabilistic Fatigue Life Framework of Notched Specimens Based on the Weibull Distribution Under Multiaxial Loading

Jie Wang 1Jianhui Liu 1Jumei Lu 1Yingbao He 1Xuemei Pan 1Ziyang Zhang1
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作者信息

  • 1. School of Mechanical and Electrical Engineering,Lanzhou University of Technology,Lanzhou 730050,China
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Abstract

In engineering applications,the notch effect and size effect significantly influence the evaluation of fatigue performance in components,necessitating special attention in life prediction.This study proposes a new probabilistic model,based on the theory of critical distance(TCD),to predict fatigue life,with the aim of quantitatively assessing the impact of notch effect and size effect.The stress distribution on the critical plane is first characterized using a sixth-order multinomial function,and the relative stress gradient function is utilized to calculate the value of the critical distance.Furthermore,the effect of the ratio of shear strain to normal strain on fatigue life under multiaxial loading is considered.Additionally,the integration of the Weibull distribution into the TCD is employed for conducting probabilistic modeling of fatigue life.Finally,fatigue experiments are conducted on notched specimens of Q355D steel,demonstrating that the life prediction results under 50%survival probability are superior to the traditional TCD method.

Key words

Theory of critical distance(TCD)/Notch effect/Size effect/Strain ratio/Weibull distribution

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出版年

2024
固体力学学报(英文版)
中国力学学会

固体力学学报(英文版)

EI
影响因子:0.214
ISSN:0894-9166
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