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首页> 外文期刊>Journal of Sound and Vibration >A finite element study on rail corrugation based on saturated creep force-induced self-excited vibration of a wheelsettrack system
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A finite element study on rail corrugation based on saturated creep force-induced self-excited vibration of a wheelsettrack system

机译:基于饱和蠕变力引起的轮对轨道系统自激振动的铁路波纹有限元研究

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摘要

The present work proposes friction coupling at the wheelrail interface as the mechanism for formation of rail corrugation. Stability of a wheelsettrack system is studied using the finite element complex eigenvalue method. Two models for a wheelsettrack system on a tight curved track and on a straight track are established. In these two models, motion of the wheelset is coupled with that of the rail by friction. Creep force at the interface is assumed to become saturated and approximately equal to friction force, which is equal to the normal contact force multiplied by dynamic coefficient of friction. The rail is supported by vertical and lateral springs and dampers at the positions of sleepers. Numerical results show that there is a strong propensity of self-excited vibration of the wheelsettrack system when the friction coefficient is larger than 0.21. Some unstable frequencies fall in the range 601200 Hz, which correspond to frequencies of rail corrugation. Parameter sensitivity analysis shows that the dynamic coefficient of friction, spring stiffness and damping of the sleeper supports all have important influences on the rail corrugation formation. Bringing the friction coefficient below a certain level can suppress or eliminate rail corrugation.
机译:本工作提出了在轮轨界面处的摩擦联接作为形成铁路波纹的机构。使用有限元复特征值方法研究了轮对跟踪系统的稳定性。建立了在紧弯轨道和直线轨道上的轮对轨道系统的两个模型。在这两种模型中,轮对的运动通过摩擦与轨道的运动耦合。假定界面处的蠕变力已饱和,并且大约等于摩擦力,该摩擦力等于法向接触力乘以动态摩擦系数。轨枕在轨枕的位置由垂直和横向弹簧以及减震器支撑。数值结果表明,当摩擦系数大于0.21时,轮对履带系统会产生强烈的自激振动。一些不稳定的频率落在601200 Hz的范围内,这与轨道波纹的频率相对应。参数敏感性分析表明,动摩擦系数,弹簧刚度和轨枕支撑的阻尼都对轨道波纹形成有重要影响。将摩擦系数降低到一定水平可以抑制或消除轨道波纹。

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