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Effect on vehicle and track interaction of installation faults in the concrete bearing surface of a direct-fixation track

机译:直接固定式轨道的混凝土支承面上安装故障对车辆和轨道相互作用的影响

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Various installation faults can occur in fasteners in the construction of a direct-fixation track using the top-down method. In extreme cases, these faults may cause excessive interaction between the train and track, compromise the running safety of the train, and cause damage to the track components. Therefore, these faults need to be kept within the allowable level through an investigation of their effects on the interactions between the train and track. In this study, the vertical dynamic stiffness of fasteners in installation faults was measured based on a dynamic stiffness test by means of an experimental apparatus that was devised to feasibly reproduce installation faults with an arbitrary shape. This study proposes an effective analytical model for a traintrack interaction system in which most elements, except the nonlinear wheelrail contact and some components that behave bilinearly, exhibit linear behavior. To investigate the effect of the behavior of fasteners in installation faults in a direct-fixation track on the vehicle and track, vehicletrack interaction analyses were carried out, targeting key review parameters such as the wheel load reduction factor, vertical rail displacement, wheel load, and mean stress of the elastomer. From the results, it was noted that it is more important for the installation faults in the concrete bearing surface of a direct-fixation track to be limited for the sake of the long-term durability of the elastomer rather than for the running safety of the train or the structural safety of the track.
机译:使用自上而下的方法在直接固定轨道的构造中,紧固件中可能会发生各种安装故障。在极端情况下,这些故障可能会导致火车与轨道之间的过度相互作用,损害火车的运行安全性,并导致轨道组件损坏。因此,需要通过调查它们对列车与轨道之间的相互作用的影响,将这些故障保持在允许的范围内。在这项研究中,紧固件的垂直动态刚度是根据动态刚度测试通过实验设备进行测量的,该实验设备设计为可再现任意形状的安装故障。这项研究为火车轨道相互作用系统提出了一个有效的分析模型,该模型中除非线性轮轨接触和一些双线性行为的元件以外的大多数元素都表现出线性行为。为了调查紧固件行为在车辆和轨道上的直接固定轨道上的安装故障中的影响,进行了车辆轨道相互作用分析,针对关键的审查参数,例如车轮载荷减小系数,垂直轨道位移,车轮载荷,和弹性体的平均应力。从结果可以看出,为了弹性体的长期耐用性而不是为了橡胶的运行安全,限制直接固定轨道的混凝土支承面中的安装故障更为重要。火车或轨道的结构安全。

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