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Estimation of Friction Coefficient Between Outside Wheel Flange and Rail Considering Influence of Wheel/Rail Wear

机译:考虑车轮/轨道磨损影响外轮法兰与轨道摩擦系数的估计

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The running safety of a railway vehicle against flange-climb derailment is evaluated with the derailment coefficient. A monitoring bogie, which can measure the derailment coefficient during commercial operations, has been developed and condition monitoring of derailment coefficient has been realized. However, the critical derailment coefficient is determined by the friction coefficient between the leading outside wheel flange and rail, which changes due to wayside rail lubrications. In order to evaluate the running safety more accurately, the present paper proposes an estimation method of the friction coefficient of the leading outside wheel flange utilizing the multibody dynamics simulation. By changing the friction condition and repeating simulation in sharp curves, relationship between the given friction coefficients and the calculated wheel/rail contact forces is derived, and look-up table is created from the results. The friction coefficient of the outside wheel can be regressively estimated by inputting the measured contact forces collected with the monitoring bogie into the look-up table. This paper also considers the influence of wheel/rail profiles on the proposed method and presents a modified look-up table made from simulations with the measured wheel/rail worn profiles.
机译:通过脱轨系数评估了铁路车辆对法兰攀爬脱轨的运行安全。已经开发了一种监测转向架,其可以在商业运营期间测量脱轨系数,并且已经实现了脱轨系数的条件监测。然而,临界脱轨系数由领先的外轮法兰和轨道之间的摩擦系数决定,该摩擦系数由于路边轨道润滑而改变。为了更准确地评估运行安全性,本文提出了利用多体动力学模拟的外界外轮法兰的摩擦系数的估计方法。通过改变尖锐曲线中的摩擦条件和重复模拟,导出给定摩擦系数和计算的轮/轨接触力之间的关系,并从结果中创建查找表。通过将监测转向架的监测转向架收集到查找表中,可以通过输入测量的接触力来回流估计外轮的摩擦系数。本文还考虑了轮/轨轮廓对所提出的方法的影响,并提出了一种用测量轮/轨磨损型材的模拟制成的改进的查找表。

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