首页> 外文期刊>Journal of marine science and technology >SPECTRAL ANALYSIS OF TRAIN-RAIL-BRIDGE COUPLING SYSTEM CONSIDERING FREQUENCY-DEPENDENT STIFFNESS OF RAIL FASTENING SYSTEMS
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SPECTRAL ANALYSIS OF TRAIN-RAIL-BRIDGE COUPLING SYSTEM CONSIDERING FREQUENCY-DEPENDENT STIFFNESS OF RAIL FASTENING SYSTEMS

机译:考虑铁路静力系统频率刚度的列车-桥梁-桥梁耦合系统的谱分析

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摘要

A rubber rail-pad is typically inserted between the rail and the sleeper to attenuate wheel/rail vibrations for conventional train-rail-bridge (TRB) system. For mathematical modeling, a rail-fastener with rubber pad is simplified as a spring-dashpot unit, whose spring stiffness is related to the exciting frequency of external loads. To exhibit such characteristics of rail-pads on TRB dynamics, based on dynamic flexibility method, two computational models of constant/frequency-dependent stiffness (FDS) are considered for comparison. Numerical studies reveal that the FDS model provides a strengthening benefit for the wheel rail vibration, from which the shifted dominant frequencies in spectral response are observed.
机译:通常在轨道和轨枕之间插入一个橡胶垫,以减轻传统火车-铁路-桥梁(TRB)系统的车轮/轨道振动。对于数学建模,带有橡胶垫的钢轨紧固件被简​​化为弹簧缓冲器组件,其弹簧刚度与外部载荷的激励频率有关。为了显示TRB动力学上的垫块的这种特性,基于动态柔韧性方法,考虑了两个恒定/频率相关刚度(FDS)的计算模型进行比较。数值研究表明,FDS模型为轮毂振动提供了增强的好处,从中可以观察到频谱响应中的主频偏移。

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