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Latest development on the simulation of rolling contact fatigue crack growth in rails

机译:轨道上滚动疲劳裂纹裂纹裂纹抗裂纹模拟的最新发展

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The two main causes of railway replacement are wear and rolling contact fatigue. Rolling contact fatigue has been a critical problem on UK railways. This paper describes recent developments in the modelling of cracks in rails, which incorporates in the model the contact between the crack faces during calculation of the Stress Intensity Factors (SIFs). This data is then combined with the SIFs caused by contact loading to provide a more realistic simulation of the crack growth. The way the methodology can be applied is described, for example using point loads to represent non-conforming contact to obtain the interaction between the wheel and the rail. The process of the wheel rolling over the crack can be modelled by moving the so called 'contact patch' along the rail. Various conditions can be applied to the crack, including frictionless contact between opposing surfaces, or frictional contact. In addition, pressure can be applied to the crack surfaces to take into account the water trapped inside the crack as the wheel rolls over. An example is given at the end of the paper to illustrate the advantages of the improved model.
机译:铁路替代的两个主要原因是磨损和滚动接触疲劳。滚动接触疲劳是英国铁路的关键问题。本文介绍了轨道内裂缝建模的最新发展,其包括在压力强度因子的计算期间裂纹面之间的接触(SIFS)。然后将该数据与由接触载荷引起的SIF来组合以提供更现实的裂缝生长模拟。可以描述方法的方式描述,例如使用点载荷来表示非符合触点以获得车轮和轨道之间的相互作用。可以通过沿着轨道移动所谓的“接触贴片”来建模裂缝的车轮的过程。可以将各种条件应用于裂缝,包括相对表面或摩擦接触之间的无摩擦接触。此外,压力可以应用于裂缝表面,以考虑在车轮上滚动时捕获在裂缝内的水。在纸张的末尾给出一个例子,以说明改进的模型的优点。

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