微动
材料科学
成核
有限元法
可塑性
结构工程
变形(气象学)
裂缝闭合
压力(语言学)
残余应力
复合材料
断裂力学
工程类
物理
热力学
语言学
哲学
作者
Camille Gandiolle,S. Fouvry
出处
期刊:Wear
[Elsevier]
日期:2015-05-01
卷期号:330-331: 136-144
被引量:19
标识
DOI:10.1016/j.wear.2015.01.037
摘要
Fretting fatigue life is a strategic issue for modern industries. Various strategies have been proposed to predict finite endurance fretting fatigue behavior. For long term assemblies, « infinite » endurance is preferred. This concept was rationalized using a so-called fretting-fatigue map which plots crack nucleation and crack arrest boundaries as functions of fatigue stress and fretting force. This mapping concept was established experimentally coupling plain fretting, fatigue and fretting fatigue experiments. It was also simulated using FEM elastic simulation. The correlation was good as long as elastic stress conditions were imposed. However, once significant plastic deformation was generated in the contact the elastic prediction induced a significant discrepancy. In the frame of this work we investigated how the integration of plasticity in the modeling strategy could improve respectively the crack nucleation and crack arrest boundaries predictions. The influence of plastic deformation on contact pressure profiles and the role of residual stresses were discussed.
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