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Prediction of wheel profile wear and vehicle dynamics evolution considering stochastic parameters for high-speed train

机译:考虑高速列车随机参数的轮廓磨损与车辆动力学演变的预测

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The aim of this paper is to accurately predict the evolution of wheel profile wear and related vehicle dynamics for high-speed trains by considering the stochastic wheel/rail interactions, which experience quite variants with time and along long distant high-speed lines in China. These variants include the rail profiles, track geometries, track irregularities and interface characteristics associated with each segment of track. Mathematic normal distribution is introduced to rationally describe these stochastic parameters. The Archard wear model and FASTSIM algorithm are employed to determine the wear within a contact patch of the wheel, and a strategy based on the travel distance of wheel is used in the profile updating procedure. Referring to previous works, a nonlinear multibody vehicle system model is built and its accuracy was validated by lab tests. In the numerical simulation, three methods of stochastic matching of parameters in wheel/rail interactions are performed, including all constant parameters, only stochastic rail profiles, and both stochastic rail profiles and stochastic track parameters. Comparative studies show that there are good agreements in the wear evaluation of wheel profile between the simulated and measured results, as well as the behavior evaluation of vehicle dynamics in a total travel distance of 300,000 km. It is essential, therefore, to consider the stochastic matchings of parameters in the wheel/rail interaction for predicting the wheel profile wear and vehicle dynamics evolution of high-speed trains.
机译:本文的目的是通过考虑随机轮/导轨相互作用,准确地预测高速列车的轮廓磨损和相关车辆动力学的演变,这在中国的时间和长时间的高速线路经历了相当的变体。这些变型包括轨道轮廓,轨道几何形状,跟踪与每个轨道的段相关的界面特性。介绍了数学正态分布,以合理地描述这些随机参数。采用Archard磨损模型和快速算法来确定车轮的接触贴片内的磨损,并且在轮廓更新过程中使用基于轮的行驶距离的策略。参考以前的作品,构建了非线性多体形车辆系统模型,并通过实验室测试验证了其精度。在数值模拟中,执行轮轨相互作用参数的三种随机匹配,包括所有恒定参数,仅仅是随机轨道轮廓和随机轨道分布和随机轨道参数。比较研究表明,模拟和测量结果之间的车轮轮廓的磨损评估中存在良好的协议,以及车辆动力学的行为评估总行程距离300,000公里。因此,必须考虑车轮/轨道相互作用中参数的随机匹配,以预测高速列车的车轮轮廓磨损和车辆动力学演变。

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