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首页> 外文期刊>Journal of Tribology >A Predictive Rolling Contact Fatigue Crack Growth Model: Onset of Branching, Direction, and Growth-Role of Dry and Lubricated Conditions on Crack Patterns
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A Predictive Rolling Contact Fatigue Crack Growth Model: Onset of Branching, Direction, and Growth-Role of Dry and Lubricated Conditions on Crack Patterns

机译:预测的滚动接触疲劳裂纹扩展模型:干态和润滑条件下裂纹模式的支化,方向和增长作用的开始

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摘要

Complex crack networks are initiated in rails under Rolling contact Fatigue. This paper attempts to model the RCF crack propagation with a particular emphasis on the branching conditions and the parameters that play a role on them. The numerical tool proposed rests on the combination of the author's RCF model, Hourlier and Pineau's criterion for the branch prediction and experimental data and the corresponding models for fatigue crack extension that are derived from a Joint European project. Parametric studies on the influence of (i) residual stresses, (ii) both interfacial crack and wheel/rail contact frictional effects, (iii) neighboring crack are conducted to reach a better understanding of the RC crack propagation behavior and more particularly the branch conditions, i.e., the length of the primary crack prior to branch formation and the branch direction.
机译:复杂的裂纹网络是在滚动接触疲劳下的钢轨中引发的。本文尝试对RCF裂纹扩展进行建模,并特别强调分支条件和对其起作用的参数。提出的数值工具基于作者的RCF模型,Hourlier和Pineau的支路预测和实验数据准则以及源自联合欧洲项目的疲劳裂纹扩展的相应模型的组合。对(i)残余应力,(ii)界面裂纹和轮轨接触摩擦效应,(iii)相邻裂纹的影响进行了参数研究,以更好地理解RC裂纹的传播行为,尤其是分支条件即分支形成之前的主裂纹长度和分支方向。

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