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首页> 外文期刊>International journal of steel structures >Fatigue Investigation on Railway Wheel Steel with White Etching Layer
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Fatigue Investigation on Railway Wheel Steel with White Etching Layer

机译:带白色腐蚀层的铁路车轮钢的疲劳研究

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Spalling is one common defect generally observed in railway wheels. The spalling phenomenon usually starts from the white etching layer (WEL) of the wheel due to cyclic loading. So far, the research work has not been systematically done on how the crack orientation influences the spalling behaviour. In our current study, the fatigue behaviours of the wheel steel with a surface crack under cyclic loading are investigated using extended finite element method. The significant parameters affecting the spalling behaviours such as the crack orientation and loadings are studied. Two key indices are used: the number of cycles required for the crack to reach the interface between the WEL and wheel steel material, and the crack propagation rate. The fatigue propagation trend in the WEL is validated by relevant experimental studies. Moreover, it is concluded from our results that a crack vertical to the surface has a greater propagation rate compared to other crack orientations.
机译:剥落是在铁路车轮中通常观察到的一种常见缺陷。由于周期性负载,剥落现象通常从砂轮的白色蚀刻层(WEL)开始。到目前为止,关于裂纹取向如何影响剥落行为的研究工作尚未系统地完成。在我们目前的研究中,使用扩展有限元方法研究了在循环载荷下具有表面裂纹的轮毂钢的疲劳行为。研究了影响剥落行为的重要参数,例如裂纹取向和载荷。使用两个关键指标:裂纹到达WEL和车轮钢材之间的界面所需的循环次数,以及裂纹的扩展速率。相关实验研究证实了WEL中的疲劳传播趋势。而且,从我们的结果可以得出结论,与其他裂纹方向相比,垂直于表面的裂纹具有更大的传播速率。

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