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Rail fatigue crack propagation in high-speed wheel/rail rolling contact

机译:高速轮/轨滚动接触中的钢轨疲劳裂纹扩展

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Abstract To study the wheel/rail rolling contact fatigue of high-speed trains, we obtain the distribution of contact forces between wheel and rail by introducing the strain-rate effect. Based on the finite element simulation, a two-dimensional finite element model is established, and the process of a wheel rolling over a crack is analyzed to predict the crack propagation direction. The statistics of possible crack propagation angles are calculated by the maximum circumferential stress criterion. The crack path is then obtained by using the average crack propagation angle as the crack propagation direction according to Weibull distribution. Results show that the rail crack mode of low-speed trains is different from that of high-speed trains. The rail crack propagation experiences a migration from opening mode to sliding mode under the low-speed trains; however, the rail crack mainly propagates in the opening mode under high-speed trains. Furthermore, the crack propagation rate for high-speed trains is faster than that for low-speed trains. The simulated crack paths are consistent with the experimental ones, which proves that it is reasonable to use the average value of possible crack propagation directions as the actual crack propagation direction.
机译:摘要为研究高速列车的轮轨滚动接触疲劳,通过引入应变率效应,求出轮轨接触力的分布。在有限元模拟的基础上,建立了二维有限元模型,分析了车轮在裂纹上滚动的过程,预测了裂纹的扩展方向。通过最大圆周应力准则计算可能的裂纹扩展角度的统计数据。然后,根据威布尔分布,将平均裂纹扩展角度用作裂纹扩展方向,从而获得裂纹路径。结果表明,低速列车的轨道开裂模式与高速列车的不同。在低速列车下,钢轨的裂纹扩展经历了从开放模式到滑动模式的转变。然而,在高速列车下,钢轨裂纹主要以开放方式传播。此外,高速列车的裂纹扩展速率比低速列车的裂纹扩展速率快。模拟的裂纹路径与实验路径一致,证明将可能裂纹扩展方向的平均值作为实际裂纹扩展方向是合理的。

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