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首页> 外文期刊>Journal of Vibration and Acoustics >On the Effects of Mistuning a Force-Excited System Containing a Quasi-Zero-Stiffness Vibration Isolator
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On the Effects of Mistuning a Force-Excited System Containing a Quasi-Zero-Stiffness Vibration Isolator

机译:关于含准零刚度隔振器的力激励系统失调的影响

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摘要

Nonlinear isolators with high-static-low-dynamic-stiffness have received considerable attention in the recent literature due to their performance benefits compared to linear vibration isolators. A quasi-zero-stiffness (QZS) isolator is a particular case of this type of isolator, which has a zero dynamic stiffness at the static equilibrium position. These types of isolators can be used to achieve very low frequency vibration isolation, but a drawback is that they have purely hardening stiffness behavior. If something occurs to destroy the symmetry of the system, for example, by an additional static load being applied to the isolator during operation, or by the incorrect mass being suspended on the isolator, then the isolator behavior will change dramatically. The question is whether this will be detrimental to the performance of the isolator and this is addressed in this paper. The analysis in this paper shows that although the asymmetry will degrade the performance of the isolator compared to the perfectly tuned case, it will still perform better than the corresponding linear isolator provided that the amplitude of excitation is not too large.
机译:具有高静态-低动态刚度的非线性隔离器由于其与线性振动隔离器相比的性能优势而在近期文献中引起了广泛关注。准零刚度(QZS)隔离器是此类隔离器的特例,其静态平衡位置的动态刚度为零。这些类型的隔离器可用于实现非常低频的振动隔离,但缺点是它们具有纯粹的硬化刚度行为。如果发生某些事情破坏系统的对称性,例如通过在操作过程中将额外的静态负载施加到隔离器上,或通过将不正确的质量悬挂在隔离器上,那么隔离器的性能将发生巨大变化。问题是这是否会对隔离器的性能造成不利影响,本文对此进行了讨论。本文的分析表明,尽管与完全调谐的情况相比,非对称性会降低隔离器的性能,但在激励幅度不太大的情况下,其性能仍将优于相应的线性隔离器。

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  • 来源
    《Journal of Vibration and Acoustics》 |2015年第4期|044502.1-044502.6|共6页
  • 作者单位

    Aeronautical and Automotive Engineering, Stewart Miller Building, Loughborough University, Leicestershire LE11 3TU, UK;

    Department of Mechanical Engineering, UNESP, Ilha Solteira, Sao Paulo 15385-000, Brazil;

    Institute of Sound and Vibration Research, University of Southampton, Southampton SO17 1BJ, UK;

    Institute of Internal Combustion Engine, Dalian University of Technology, Dalian 116023, China;

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