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A dynamic wheel-rail impact analysis of railway track under wheel flat by Finite Element Analysis

机译:用有限元法动态分析轮对下铁路轨道的轮轨冲击。

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摘要

Wheel–rail interaction is one of the most important research topics in railway engineering. It involves track impact response, track vibration and track safety. Track structure failures caused by wheel–rail impact forces can lead to significant economic loss for track owners through damage to rails and to the sleepers beneath. Wheel–rail impact forces occur because of imperfections in the wheels or rails such as wheel flats, irregular wheel profiles, rail corrugations and differences in the heights of rails connected at a welded joint. A wheel flat can cause a large dynamic impact force as well as a forced vibration with a high frequency, which can cause damage to the track structure. In the present work, a three-dimensional (3-D) finite element (FE) model for the impact analysis induced by the wheel flat is developed by use of the finite element analysis (FEA) software package ANSYS and validated by another validated simulation. The effect of wheel flats on impact forces is thoroughly investigated. It is found that the presence of a wheel flat will significantly increase the dynamic impact force on both rail and sleeper. The impact force will monotonically increase with the size of wheel flats. The relationships between the impact force and the wheel flat size are explored from this finite element analysis and they are important for track engineers to improve their understanding of the design and maintenance of the track system.
机译:轮轨相互作用是铁路工程中最重要的研究主题之一。它涉及轨道冲击响应,轨道振动和轨道安全性。轮轨撞击力引起的轨道结构故障,可能会由于轨道和下方轨枕的损坏而给轨道所有者带来重大的经济损失。轮轨碰撞力的产生是由于车轮或钢轨的缺陷,例如车轮平面,不规则的车轮轮廓,钢轨的波纹以及在焊接接头处连接的钢轨的高度不同。车轮漏气会导致较大的动态冲击力以及高频率的强制振动,从而可能损坏履带结构。在目前的工作中,通过使用有限元分析(FEA)软件包ANSYS开发了用于轮毂引起的冲击分析的三维(3-D)有限元(FE)模型,并通过另一个经过验证的仿真进行了验证。彻底研究了轮辋对冲击力的影响。已经发现,轮辋的存在将显着增加对轨道和轨枕的动态冲击力。冲击力将随着轮辋尺寸的增加而单调增加。通过此有限元分析探索了冲击力和轮辋尺寸之间的关系,它们对轨道工程师提高对轨道系统的设计和维护的了解非常重要。

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