材料科学
横截面
表面光洁度
方位(导航)
峰度
润滑
威布尔分布
均方根
损伤力学
有限元法
表面粗糙度
机械
结构工程
复合材料
数学
工程类
物理
电气工程
天文
统计
作者
Jian Guan,Liqin Wang,Yunfeng Li,Chuanwei Zhang,Le Gu
标识
DOI:10.1177/1056789519842367
摘要
In this paper, a continuum damage mechanics model is incorporated into the finite element model which contains a spherical inclusion to investigate damage evolution and predict fatigue life of M50-bearing steel. Quasi-dynamic method, isothermal elastohydrodynamic lubrication analysis and non-Gaussian surface simulating technique are combined to obtain the contact pressure. The damage evolution process of the micro-domain considering roughness texture is simulated and the fatigue life is predicted. The result shows that transverse texture can weaken the damage accumulation due to the strengthening of hydrodynamic effect. The effects of surface roughness parameters on fatigue life are also analyzed. It should be noted that transverse texture, small mean square root value and kurtosis, negative skewness are helpful for enhancing the fatigue life of bearing steel. Meanwhile, the increase of frictional coefficient and radius, negative position of local region will reduce the fatigue life.
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