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首页> 外文期刊>International Journal of Fatigue >Crack propagation in rails under rolling contact fatigue loading conditions based on material forces
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Crack propagation in rails under rolling contact fatigue loading conditions based on material forces

机译:基于材料力的滚动接触疲劳载荷条件下的钢轨裂纹扩展

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摘要

Tools for the prediction of crack growth in rails are of vital importance for the railway industry. In this paper, numerical simulations of crack growth in rails are presented. More specifically, the focus is on short surface head check like cracks, often observed at the rail gauge corner. A fatigue crack propagation model expressed in terms of a crack driving force, derived from the concept of material forces, is presented. It is shown that only the component parallel to the crack tip of the crack driving force is a reliable quantity that can be used in numerical simulations of a Rolling Contact Fatigue (RCF) situation. In addition, it is shown that one term in the expression of the crack driving force (C_(sur)) is dependent on the computational mesh. The propagation model has been used for parametric studies of crack propagation to investigate key parameters such as loading and crack geometry. Results from these studies suggest that anisotropic effects from the highly deformed surface layer may need to be included in order to simulate head check growth in rails accurately.
机译:预测钢轨裂纹扩展的工具对铁路行业至关重要。本文介绍了钢轨裂纹扩展的数值模拟。更具体地说,重点是经常在轨距角处观察到的短表面头部检查(如裂纹)。提出了一种以裂纹驱动力表示的疲劳裂纹扩展模型,该模型源自材料力的概念。结果表明,只有与裂纹驱动力的裂纹尖端平行的分量才是可靠的量,可以在滚动接触疲劳(RCF)情况的数值模拟中使用。另外,示出了裂纹驱动力(C_(sur))的表达式中的一项取决于计算网格。该传播模型已用于裂纹扩展的参数研究,以研究关键参数,例如载荷和裂纹几何形状。这些研究的结果表明,可能需要包括高度变形的表面层的各向异性效应,以便准确模拟轨道中的头部检查。

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