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首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Dynamics of Independently Rotating Wheel System in the Analysis of Multibody Railroad Vehicles
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Dynamics of Independently Rotating Wheel System in the Analysis of Multibody Railroad Vehicles

机译:多体铁路车辆分析中独立旋转轮系统的动力学

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摘要

In this investigation, dynamic characteristics of independently rotating wheel systems are discussed. To this end, a multibody independently rotating wheelset (IRW) model is developed using the method of velocity transformation. The linear stability analysis of a two-axle IRW truck is performed, the hunting stability and vibration characteristics of IRW truck are investigated, and the results are compared with those obtained using the multibody dynamics model. Good agreement is obtained in hunting frequencies and critical speeds. It is shown using the linear IRW equations that since a constant forward speed is assumed for IRW, the longitudinal slip can occur due to the change in the wheel rolling radius. This leads to longitudinal creep forces even in the case of IRW and it contributes to a coupling of the lateral, yaw, and pitch motions of IRW. Furthermore, it is observed in several numerical examples that, due to small self-centering forces of IRW, continuous flange contact occurs on tangent track, while in curve negotiation, flange contacts on outer wheel of the front axle, as well as that on inner wheel of the rear axle, occur. Such an effect can be more significant when sharp curve negotiation is considered as encountered in light rail vehicle applications.
机译:在这项研究中,讨论了独立旋转的车轮系统的动态特性。为此,使用速度转换方法开发了多体独立旋转轮对(IRW)模型。进行了两轴IRW卡车的线性稳定性分析,研究了IRW卡车的波动稳定性和振动特性,并将结果与​​使用多体动力学模型获得的结果进行了比较。在搜寻频率和临界速度上获得了良好的一致性。使用线性IRW方程式可以看出,由于IRW假定为恒定的前进速度,因此由于车轮滚动半径的变化而可能发生纵向滑移。即使在IRW的情况下,这也会导致纵向蠕变力,并且有助于IRW的横向,偏航和俯仰运动的耦合。此外,在几个数值示例中观察到,由于IRW的自定心力较小,因此在切线轨道上会发生连续的法兰接触,而在曲线协商中,前轴的外轮以及内轴的法兰会发生接触。后轴发生故障。当认为在轻轨车辆应用中遇到急剧的曲线协商时,这种效果可能会更加显着。

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