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Application of the semi-Hertzian method to the prediction of wheel wear in heavy haul freight car

机译:半赫兹方法在重载货车车轮磨损预测中的应用

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In order to simulate the wheel wear behaviour of freight cars, the rail vehicle's multi-body dynamical model and wheel wear simulation programme were combined as a wheel wear simulation tool in this paper. Multi-body dynamical models of China's heavy haul freight cars such as the C80, C80H, C70 and C70H, were built in SIMPACK software and the track system was built based on the China's Ring-line. For the wheel/rail rolling contact, the semi-Hertzian method and FASTSIM algorithm were applied to solve the normal and tangential problem respectively. The shapes of worn wheel profiles in the simulation agree well with the field measurements, but wear rates from the simulation are larger than those found in field measurements. This discrepancy is contributed to two factors. The first factor is the wheel material. The CL60 wheel steel used in China's freight car, is harder than the BS11 wheel steel used in Zobory's wheel/rail wear experiments. The second factor is the impact of a material's elastic shear deformation on the slip velocity in contact patch. This impact will increase the wear rate and was considered in the present wear simulation.
机译:为了模拟货车的车轮磨损行为,将轨道车辆的多体动力学模型和车轮磨损仿真程序结合起来作为车轮磨损仿真工具。在SIMPACK软件中建立了C80,C80H,C70和C70H等中国重型货车的多体动力学模型,并基于中国的Ring-line建立了轨道系统。对于轮轨滚动接触,分别采用半赫兹法和FASTSIM算法分别求解法向和切向问题。模拟中的磨损车轮轮廓形状与现场测量结果非常吻合,但是模拟中的磨损率大于现场测量中的磨损率。这种差异是由两个因素造成的。第一个因素是车轮材料。中国货车中使用的CL60车轮钢比Zobory的轮/轨磨损实验中使用的BS11车轮钢要坚硬。第二个因素是材料的弹性剪切变形对接触贴片中的滑移速度的影响。这种影响将增加磨损率,并且在当前的磨损模拟中已经考虑到了。

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