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An efficient model for vehicle-slab track coupled dynamic analysis considering multiple slab cracks

机译:考虑多板裂缝的车辆板轨道耦合动态分析有效模型

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This paper presents an efficient model for vehicle-slab track coupled dynamic analysis addressing the challenge problem of multiple slab cracks in high-speed railways. The multi-cracked track slabs are described as free Euler-Bernoulli beams supported on the cement asphalt (CA) mortar. The concentrated cracks are assumed to be in the through-transverse form, which are considered to locally affect the vertical bending stiffness of the beam and treated by applying the uniform flexural stiffness with Dirac's delta singularities. The introduced damage parameters are expressed by incorporating the rotational springs using the linear elastic fracture mechanics. The vibration equations of slab track subsystem involving multiple slab cracks are finally set up by adopting the modal superposition approach, and are coupled with vehicle subsystem motions through nonlinear wheel-rail contact forces. An explicit integration method is applied to solve the whole coupled system excited by the random track irregularities. The developed model can also be expediently degenerated to the traditional model with intact slabs by setting the damage parameters to zero. Time-frequency analysis is conducted through fully investigating the effect of the crack depth, the crack numbers with different distribution properties and the CA mortar stiffness on the system dynamic responses. Some practical conclusions are drawn and may provide potent information for the maintenance in railway engineering and vibration based damage identification. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文提出了一种有效的车辆板轨道耦合动态分析模型,解决了高速铁路中多板裂缝的挑战问题。多裂纹的轨道板被描述为支撑在水泥沥青(CA)砂浆上的游离欧拉伯努利梁。假设浓缩裂缝处于横向形式,其被认为是局部地影响光束的垂直弯曲刚度并通过用DIRAC的DELTA奇异施加均匀的弯曲刚度处理。通过使用线性弹性骨折力学结合旋转弹簧来表示引入的损伤参数。最后通过采用模态叠加方法来建立涉及多个板坯裂缝的板式轨道子系统的振动方程,并通过非线性轮轨接触力与车辆子系统运动相结合。应用显式集成方法来解决随机轨道不规则激发的整个耦合系统。通过将损坏参数设定为零,开发的模型也可以有利地退化到传统模型,而具有完整的板坯。通过充分研究裂缝深度,具有不同分配性能的裂缝数和系统动态响应的CA砂浆刚度的裂缝数进行时频分析。一些实用的结论被绘制,可以为铁路工程和基于振动的损伤识别提供有效信息。 (c)2019 Elsevier Ltd.保留所有权利。

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