首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part F: Journal of Rail and Rapid Transit >Wheel–rail impact and the dynamic forces at discrete supports of rails in the presence of singular rail surface defects
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Wheel–rail impact and the dynamic forces at discrete supports of rails in the presence of singular rail surface defects

机译:在存在奇异的钢轨表面缺陷的情况下,轮轨撞击和钢轨离散支撑处的动力

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摘要

A validated three-dimensional (3D) transient finite element model is used to evaluate the wheel–rail impact at singular rail surface defects and the resulted high-frequency dynamic forces at the discrete supports of the rail. A typical ballasted railway track is modeled, in which the supports of the rail are composed of the fastenings, the sleepers, and the ballast. The primary suspension of the vehicle is considered. To include all the important eigen characteristics of the vehicle–track system, the wheel set, the rail, and the sleepers are all meshed using 3D solid elements. The transient wheel–rail rolling contact is solved using a surface-to-surface contact algorithm in the time domain. By simulating the steady-state rolling of a wheel set on a smooth rail, the vertical force distribution at the discrete supports is first compared with Zimmermann solution. Afterward, rail surface defects are applied to calculate the resulted dynamic forces at thewheel–rail interface and at the discrete supports of the rail under different rolling speeds. The obtained dynamic responses confirm the necessity of using such a detailed model for the investigations.
机译:经过验证的三维(3D)瞬态有限元模型用于评估轮轨在奇异轨道表面缺陷处的冲击以及在离散轨道上产生的高频动态力。对典型的压载铁路轨道进行了建模,其中轨道的支撑由紧固件,轨枕和压载物组成。考虑车辆的主要悬架。为了包括车辆跟踪系统的所有重要特征,车轮,导轨和轨枕都使用3D实体元素进行了网格划分。使用时域中的表面到表面接触算法解决了轮轨瞬时滚动接触问题。通过模拟车轮组在平滑轨道上的稳态滚动,首先将离散支撑处的垂直力分布与Zimmermann解决方案进行比较。然后,在不同的轧制速度下,应用钢轨表面缺陷来计算在轮-钢轨界面和钢轨的离散支撑处产生的动态力。获得的动态响应证实了使用这种详细模型进行研究的必要性。

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