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Parametric analysis of wheel wear in high-speed vehicles

机译:高速车辆车轮磨损的参数分析

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摘要

In order to reduce the wheel profile wear of high-speed trains and extend the service life of wheels, a dynamic model for a high-speed vehicle was set up, in which the wheelset was regarded as flexible body, and the actual mea-sured track irregularities and line conditions were considered. The wear depth of the wheel profile was calculated by the well-known Archard wear law. Through this model, the influence of the wheel profile, primary suspension stiffness, track gage, and rail cant on the wear of wheel profile were studied through multiple iterative calculations. Numerical simulation results show that the type XP55 wheel profile has the smallest cumulative wear depth, and the type LM wheel profile has the largest wear depth. To reduce the wear of the wheel profile, the equivalent conicity of the wheel should not be too large or too small. On the other hand, a small primary vertical stiffness, a track gage around 1,435-1,438 mm, and a rail cant around 1:35-1:40 are beneficial for dynamic per-formance improvement and wheel wear alleviation.
机译:为了减少高速列车的轮廓磨损并延长车轮的使用寿命,建立了以轮对为柔性体的高速车辆动力学模型,并对其进行了实际测量。考虑了轨道不平顺和线路状况。车轮轮廓的磨损深度是根据众所周知的Archard磨损定律计算得出的。通过该模型,通过多次迭代计算研究了车轮轮廓,主悬架刚度,轨距和轨道倾斜对车轮轮廓磨损的影响。数值模拟结果表明,XP55型轮胎轮廓的累积磨损深度最小,而LM型轮胎轮廓的最大磨损深度。为了减少车轮轮廓的磨损,车轮的等效锥度不应太大或太小。另一方面,较小的主竖向刚度,约1,435-1,438毫米的轨距和约1:35-1:40的轨道倾斜度,对于改善动态性能和减轻车轮磨损是有益的。

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  • 来源
    《现代交通学报(英文版)》 |2014年第2期|76-83|共8页
  • 作者

    Na Wu; Jing Zeng;

  • 作者单位

    State Key Laboratory of Traction Power, Southwest Jiaotong University, Chengdu 610031, China;

    State Key Laboratory of Traction Power, Southwest Jiaotong University, Chengdu 610031, China;

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