周期性无砟轨道-桥梁耦合结构弹性波传播效应分析
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中铁四局集团有限公司

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Analysis of Elastic Wave Propagation Effect of Periodic Ballastless Track-Bridge Coupling Structure
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    摘要:

    为探究周期性桥上无砟轨道结构中的弹性波传播规律,将无砟轨道-桥梁耦合结构考虑为:包括钢轨、轨道板、底座板、桥梁在内的四层Timoshenko梁耦合模型,利用平面波级数展开法-能量法求解其频散特性。通过与有限元仿真结果对比验证了本文方法的准确性,而后基于该方法探究了结构刚度变化对弹性波传播的影响、阐明了频散特性中禁带的形成机理。结果表明:0-50Hz内,该结构共存在两条禁带,且在纵向刚度较大时,其起始频率与截止频率主要受各连接层的纵向刚度影响,第一、二阶截止频率分别随滑动层刚度、扣件层刚度的增加而增大。本研究为桥上无砟轨道结构的减振工作提供了一定的理论参考。

    Abstract:

    In order to explore the elastic wave propagation law in the ballastless track structure on the periodic bridge, the ballastless track-bridge coupling structure is considered as a four-layer Timoshenko beam coupling model including rail, track plate, base plate and bridge. The plane wave series expansion method-energy method is used to solve its dispersion characteristics. The accuracy of the proposed method is verified by comparing with the finite element simulation results. Then, based on this method, the influence of structural stiffness change on elastic wave propagation is explored, and the formation mechanism of band gap in dispersion characteristics is clarified. The results show that there are two forbidden bands in the structure within 0-50 Hz, and the initial frequency and cut-off frequency are mainly affected by the longitudinal stiffness of each connecting layer. The first and second cut-off frequencies increase with the increase of glide lamella stiffness and fastener layer stiffness respectively. The research provides a theoretical reference for the vibration reduction of ballastless track structure on bridge.

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历史
  • 收稿日期:2023-12-13
  • 最后修改日期:2023-12-13
  • 录用日期:2024-02-26
  • 在线发布日期: 2024-03-25
  • 出版日期: