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Attenuation of flexural vibration for floating floor and floating box induced by ground vibration

机译:地面振动引起的浮地和浮箱挠曲振动的衰减

摘要

This paper investigates the vibration isolation performance of floating floor and floating box structures to control rail vibration transmission. Simple theoretical and experimental methods are developed to analyze the effects of stiffener beam, mass and arrangement of isolator on the fundamental natural frequency of the flexural vibration of floating floor and box structure. The vibration reduction performances of floating floor and box structure are found to be degraded by flexural vibration of the floor or supporting stiffener beam. From the results of vibration measurements; stiffener beams increase the fundamental natural frequency of flexural vibration of floating floor and enhance vibration isolation. Also they can further alleviate the effect of flexural vibration using optimum isolator arrangement effectively. The proposed floating box design achieved a vibration reduction of 15-30 dB in frequency region of critical rail vibration (30-200 Hz).
机译:本文研究了浮动地板和浮箱结构的隔振性能,以控制轨道的振动传递。开发了简单的理论和实验方法来分析加劲肋,隔振块的质量和布置对浮地和箱形结构挠曲振动的基本固有频率的影响。发现浮动地板和箱形结构的减振性能会因地板或支撑加劲梁的弯曲振动而降低。根据振动测量结果;加强梁增加了浮动地板弯曲振动的基本固有频率,并增强了隔振效果。而且,它们可以使用最佳的隔离器布置进一步有效地减轻弯曲振动的影响。所提出的浮箱设计在临界轨道振动(30-200 Hz)的频率范围内实现了15-30 dB的振动减小。

著录项

  • 作者

    Hui CK; Ng CF;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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