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Influence of the Fastening Modeling on the Vehicle-Track Interaction at Singular Rail Surface Defects

机译:固定模型对奇异轨面缺陷处的车轨相互作用的影响

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With up to 12 spring-damper groups distributed in the actual area of a rail pad, different fastening models are developed in this paper to include the nonuniform pressure distribution within a fastening system and model the constraints at the rail bottom more realistically for the purpose of high frequency dynamics between vehicle and track. Applied to a 3D transient FE model of the vehicle-track interaction, influence of the fastening modeling on the high frequency dynamic contact forces at singular rail surface defects (SRSDs) is examined. Two defect models, one is relatively large and the other is small, are employed. Such a work is of practical significance because squats, as a kind of SRSD, have become a wide spread problem. Results show that the fastening modeling plays an important role in the high frequency dynamic contact forces at SRSDs. Supports in the middle of the rail bottom, modeled as spring-damper groups located under rail web, are found to be most important. The less the rail bottom is constrained or supported, the more isolated the sleepers and substructure are from the wheel-rail interaction, and the more kinetic energy is kept in the rail after impact at a SRSD. Rolling speed is also varied to take into account its influence. Finally, based on the results of this work, influence of the service states of the fastening system on growth of relatively small SRSDs is discussed.
机译:通过在导轨垫的实际区域中分布多达12个弹簧-阻尼器组,本文开发了不同的紧固模型,以包括紧固系统内的不均匀压力分布,并且为了更实际地对轨道底部的约束进行建模。车辆与轨道之间的高频动态。将其应用于车辆-轨道相互作用的3D瞬态有限元模型,研究了紧固模型对奇异轨道表面缺陷(SRSD)时高频动态接触力的影响。使用两种缺陷模型,一种是相对较大的,另一种是较小的。这样的工作具有实际意义,因为蹲坐作为一种SRSD,已经成为一个广泛传播的问题。结果表明,紧固模型在SRSD的高频动态接触力中起着重要作用。人们发现,最重要的是模拟位于铁路腹板下方的弹簧减震器组的铁路底部中间的支撑。轨道底部受约束或支撑的次数越少,轨枕和下部结构与轮轨相互作用的隔离度就越高,并且在SRSD撞击后,轨道中保持的动能就越多。考虑到其影响,滚动速度也有所变化。最后,基于这项工作的结果,讨论了紧固系统的服务状态对相对较小的SRSD的增长的影响。

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