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Modeling the dynamic behavior of railway track taking into account the occurrence of defects in the system wheel-rail

机译:建模铁路轨道的动态行为考虑了系统轮轨缺陷的发生

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This paper investigates the influence of wheel defects on the development of rail defects up to a state where rail prompt replacement becomes necessary taking into account different models of the dynamic contact between a wheel and a rail. In particular, the quasistatic Hertz model, the linear elastic model and the elastoplastic Aleksandrov-Kadomtsev model. Based on the model of the wheel-rail contact the maximum stresses are determined which take place in the rail in the presence of wheel defects (e.g. flat spot, weld-on deposit, etc.). In this paper, the solution of the inverse problem is presented, i.e., investigation of the influence of the strength of a wheel impact upon rails on wheel defects as well as evaluation of the stresses emerging in rails. During the motion of a railway vehicle, the wheel pair position in relation to rails changes significantly, which causes various combinations of wheel-rail contact areas. Even provided the constant axial load, the normal stresses will substantially change due to the differences in the radii of curvature of contact surfaces of these areas, as well as movement velocities of railway vehicles.
机译:本文调查了车轮缺陷对轨道缺陷的发展的影响,该缺陷达到了轨道提示更换的状态,考虑了车轮和轨道之间的动态接触的不同模型。特别地,Quasistatic Hertz模型,线性弹性模型和弹性塑料Aleksandrov-Kadomtsev模型。基于轮轨接触的模型,确定在车轮缺陷存在(例如,平坦点,焊接沉积物等)中发生最大应力。在本文中,提出了逆问题的解决方案,即对轨道上的轨道的轨道强度的影响以及对轨道出现的应力的评估。在铁路车辆的运动期间,轮对与轨道相对于轨道的位置显着变化,这导致轮轨接触区域的各种组合。即使提供了恒定的轴向载荷,由于这些区域的接触表面的曲率半径的差异以及铁路车辆的移动速度,正常应力将基本变化。

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