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Vibration isolation using a hybrid lever-type isolation system with an X-shape supporting structure

机译:使用具有X形支撑结构的混合杠杆式隔振系统进行隔振

摘要

This study presents some novel results about analysis and design of low-frequency or broadband-frequency vibration isolation using a hybrid lever-type isolation system with an X-shape supporting structure in passive or semi-active control manners. It is shown that the system has inherent nonlinear stiffness and damping properties due to structure geometrical nonlinearity. Theoretical analysis reveals that the hybrid isolation system can achieve very good ultra-low-frequency isolation through a significantly-improved anti-resonance frequency band (by designing structure parameters). Noticeably, the system can realize a uniformly-low broadband vibration transmissibility, which has never been reported before. Cases studies show that the system can work very well with good isolation performance subject to multi-tone and random excitations. The results provide a new innovative approach to passive or semi-active vibration control (e.g., via a simple linear stiffness control) for many engineering problems with better ultra-low/broadband-frequency vibration suppression.
机译:这项研究提出了一些关于采用X形支撑结构的混合杠杆式隔振系统以被动或半主动控制方式进行低频或宽带振动隔振的分析和设计的新成果。结果表明,由于结构几何非线性,系统具有固有的非线性刚度和阻尼特性。理论分析表明,通过显着改善反谐振频段(通过设计结构参数),混合隔离系统可以实现非常好的超低频隔离。值得注意的是,该系统可以实现均匀低的宽带振动传输率,这是前所未有的。案例研究表明,该系统在受到多声和随机激励的情况下,具有良好的隔离性能,可以很好地工作。结果为被动或半主动振动控制(例如通过简单的线性刚度控制)提供了一种新的创新方法,可解决许多工程问题,并具有更好的超低/宽带频率振动抑制能力。

著录项

  • 作者

    Liu C; Jing X; Li F;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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