Reduction of transmissibility and increase in efficacy of vibration isolation using negative stiffness device with enhanced damping

Satish Nagarajaiah, Keguan Zou, Sudheendra Herkal
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引用次数: 2

Abstract

Effect of passive vibration isolation heavily depends on force–displacement characteristic of the isolation system. In view of this dependence, this paper investigates the influence of negative stiffness device (NSD) on the effect of vibration isolation system. Detailed evaluation of transmissibility is performed. The critical parameters are identified. It is found that with NSD, significant vibration reduction for both absolute and relative displacement transmissibility is obtained. A modified Lindstedt–Poincaré method (modified L–P method) is used to obtain analytical periodic solutions for the approximated piecewise linear dynamic system. The analytical limit cycles by the modified L–P solution agree satisfactorily with the ones by numerical simulation. The most important finding of this study is that larger damping in a system with NSD helps in reducing transmissibility, thus increasing the efficacy of the isolation system; this is in contrast to other conventional isolation systems, wherein increased structural damping decreases the efficacy of vibration control in the frequency range of interest. It is worth noting that this finding of NSD enhancing the structural damping is consistent with earliest studies by senior author and collaborators.
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利用增强阻尼的负刚度装置降低传递率,提高隔振效率
被动隔振的效果很大程度上取决于隔振系统的力-位移特性。鉴于这种相关性,本文研究了负刚度装置对隔振系统效果的影响。对传播率进行了详细的评估。确定了关键参数。研究发现,采用NSD后,绝对位移传递率和相对位移传递率均有显著的减振效果。采用一种改进的lindstedt - poincar方法(改进的L-P方法)得到了近似分段线性动力系统的解析周期解。修正L-P解的解析极限环与数值模拟结果吻合较好。本研究最重要的发现是,在具有NSD的系统中,较大的阻尼有助于降低传播率,从而提高隔离系统的效率;这与其他传统的隔离系统形成对比,其中增加的结构阻尼降低了感兴趣频率范围内振动控制的有效性。值得注意的是,NSD增强结构阻尼的发现与资深作者和合作者的早期研究一致。
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