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Wheel/Rail Non-linear Interactions With Coupling Between Vertical and Lateral Directions

机译:轮/轨非线性相互作用以及垂直方向和横向方向之间的耦合

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A theoretical model is developed to explore the high frequency wheel/rail interaction with coupling between the vertical and lateral directions. This coupling is introduced through the track dynamics due to the offset of the wheel/rail contact point from the rail centre line. Equivalent models of the railway track in the time domain are developed according to the rail vibration receptances in the frequency domain. The wheel is represented by a mass in each direction with no vertical-lateral coupling. The vertical wheel/rail interaction is generated through a non-linear Hertzian contact stiffness, allowing for the possibility of loss of contact between the wheel and rail. The lateral interaction is represented by a contact spring and a creep force damper in series and their values depend on the vertical contact force. The vibration source is the roughness on the wheel and rail contact surfaces which forms a relative displacement excitation in the vertical direction. Using the combined interaction model with this relative displacement excitation, the wheel/rail interactions with coupling between the vertical and lateral vibrations are simulated. It is found that the lateral interaction force caused by the offset is usually less than thirty percent of the vertical dynamic force. The lateral vibration of the rail is significantly reduced due to the presence of the lateral coupling, whereas the vertical interaction is almost unaffected by the lateral force.
机译:开发了一个理论模型来探索高频车轮/轨道在垂直方向和横向方向之间的耦合作用。由于车轮/轨道接触点偏离轨道中心线,因此通过轨道动力学引入了这种耦合。根据频域中的轨道振动接受度,开发了时域中的铁路轨道等效模型。车轮由每个方向的质量表示,没有垂直-横向耦合。垂直的车轮/轨道相互作用是通过非线性赫兹接触刚度产生的,从而允许车轮和轨道之间失去接触。横向相互作用由接触弹簧和蠕变力阻尼器串联表示,它们的值取决于垂直接触力。振动源是车轮和轨道接触表面上的粗糙度,在垂直方向上形成相对位移激励。使用具有这种相对位移激励的组合相互作用模型,可以模拟在垂直和横向振动之间耦合的车轮/轨道相互作用。已经发现,由偏移引起的横向相互作用力通常小于垂直动态力的百分之三十。轨道的横向振动由于横向联接的存在而大大降低,而垂直相互作用几乎不受横向力的影响。

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