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Analysis of lateral track buckling using new frame-type equations

机译:使用新的框架类型方程分析横向轨道屈曲

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In the past several decades, many lateral track buckling studies have been conducted in an effort to determine an allowable safe temperature increase for preventing the occurrence of buckling. The present analysis builds on some of these studies, but uses recently derived frame-type equations that more accurately represent the response of the rail-tie structure in the lateral plane, The presented analysis takes into account the effects of the torsional stiffness of the rail fasteners, the lateral bending stiffness of the cross-ties, and the track gauge to model more accurately the lateral response of the track panel to temperature increases. It determines effective ways to raise the allowable safe temperature increase, whether by increasing the axial and lateral resistances or by increasing the rotational stiffness of the fasteners. Also, the effect of lateral tie-stiffness on the safe temperature increase is examined.
机译:在过去的几十年中,已经进行了许多横向轨道屈曲研究,以试图确定允许的安全温度升高以防止屈曲的发生。本分析基于其中一些研究,但使用了最近推导的框架类型方程,该方程更精确地表示了横梁上横梁结构的响应。所提出的分析考虑了横梁的扭转刚度的影响紧固件,横拉杆的横向弯曲刚度,以及用于更精确地模拟履带板对温度升高的横向响应的轨道规。它确定了通过增加轴向和横向阻力或通过增加紧固件的旋转刚度来提高允许的安全温度升高的有效方法。另外,还研究了横向连接刚度对安全温度升高的影响。

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