桥梁伸缩缝对车-轨-桥系统影响的研究

Yunlu Wang, M. Gao, Jingjing Yang
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引用次数: 0

摘要

在大跨度铁路桥梁的梁端设置桥梁伸缩缝,以保证轨道的可靠过渡。梁式桥架的轨道结构比桥梁结构复杂,因此梁式桥架应具有合适的动刚度,以保证车辆的安全稳定。以密集布置梁架的高速铁路桥梁为例,建立了车-轨-桥耦合模型,分析了梁架竖向刚度对整个系统动力响应的影响。基于所建立的模型,研究表明,梁架的变形会造成钢轨的短波不规则性和对车辆的高频冲击。不合理的梁架刚度会大大增加车辆的脱轨风险,因此在梁架设计时应充分考虑梁架刚度对车辆动力响应的影响。根据研究结果,建议采用较大刚度的垫板。研究结果已应用于所研究的铁路线路上的折弯机设计,这些线路目前处于良好的运行状态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Influence of Bridge Expansion Joints on Vehicle-Track- Bridge System
Bridge expansion joints (BEJs) are equipped at the girder end of long-span railway bridges to ensure the reliable transition of the track. The track structure of BEJs is more complex than that of bridge, so the BEJs should have suitable dynamic stiffness to ensure the safety and stability of vehicle. Taking a high-speed railway bridge equipped with densely arranged BEJs as an example, a vehicle- track-bridge coupled model was established to analyse the influence of vertical stiffness of BEJs on the dynamic response of whole system. Base on the established model, the study shows that the deformation of the BEJs will cause the short-wave irregularity of the rail and high-frequency impact on the vehicle. The unreasonable stiffness of BEJs will greatly increase the derail risk of the vehicle, so the influence of the stiffness of BEJs on the dynamic response of vehicle should be considered adequately in the design of the BEJs. According to the research results, it is recommended to use a larger stiffness of cushion plate. The results have been applied to the design of the BEJs on the studied railway lines, which are in good service condition at present.
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