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Influence of Vibration Isolator Failure on Vehicle Operation Performance and Floating Slab Track Structure Vibration Reduction Effectiveness

机译:隔振器故障对车辆运行性能和浮动板轨道结构减振效果的影响

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At present, steel-spring floating slabs have been widely used in urban rail transit to reduce the influence of ground vibration caused by vehicle operation on the surrounding environment. As a core part of vibration reduction for floating slab track, the steel-spring vibration isolator may fail in different forms during operation. In order to study the influence of vibration isolator failure on vehicle operation performance and floating slab track structure vibration reduction effectiveness, a rigid-flexible coupling dynamic model of vehicle-rail-floating slab track is established by multibody dynamics and finite element simulation, and the rationality of the model and its parameters is verified by comparing the theoretical calculation results with the measured data. Based on the model, the failure conditions of steel spring are simulated, considering the failure position and number of steel springs. The results show that the failures of steel-spring vibration isolators have a significant impact on operating safety and stability of vehicle, and the failure at end is more dangerous than that at midspan. In addition, it also changes the local restraint state of floating slab, resulting in the local vibration mode, which reduces the floating slab track structure vibration reduction effectiveness, mainly within 10?Hz. The different numbers of steel-spring failures will change the natural modal frequency of floating slab to varying degrees, which may cause the resonance of a certain frequency of the vehicle-track coupling system, leading to other track structure diseases.
机译:目前,钢弹簧浮动板已广泛应用于城市轨道交通,以减少车辆运行在周围环境上引起的地面振动的影响。作为浮动板轨道的减振的芯部分,钢弹簧隔振器在操作期间可能以不同的形式失效。为了研究振动隔离器故障对车辆操作性能和浮动板轨道结构减振效率的影响,通过多体动力学和有限元模拟建立了车辆浮动板轨道的刚性柔性耦合动态模型,以及通过比较测量数据的理论计算结果,验证了模型的合理性及其参数。基于该模型,模拟钢弹簧的故障条件,考虑到钢弹簧的故障位置和数量。结果表明,钢春振隔离器的故障对车辆的操作安全性和稳定性产生了重大影响,并且结束的故障比中间的故障更危险。另外,它还改变了浮动板的局部约束状态,导致局部振动模式,这降低了浮动板轨道结构减振效率,主要在10?Hz内。不同数量的钢弹簧故障将使浮动板坯的自然模频频率改变为变化的程度,这可能导致车辆轨道耦合系统的某个频率的共振,导致其他轨道结构疾病。

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