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Vibration suppression of metamaterial with local resonators coupled by negative stiffness springs

机译:用负刚度弹簧耦合的局部谐振器的振动抑制

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This paper proposes a metamaterial beam with local resonators coupled by negative stiffness springs. First, a distributed parameter metamaterial beam model with the proposed configuration of coupled local resonators is developed. Due to the introduction of the negative stiffness springs, the system is prone to be unstable. The stability analysis indicates that the infinitely long metamaterial beam becomes unstable as long as the stiffness of the coupling spring becomes negative. For the finitely long metamaterial beam, the stability could be achieved for given negative coupling springs. A parametric study is then conducted to investigate the effects of the number of cells and the lattice constant on the system stability. The transmittance of the finitely long metamaterial beam is calculated. The result shows that due to the restriction on the tunability of the negative stiffness for the proposed metamaterial beam, a certain trade-off is needed for the appearance of the quasi-static vibration suppression region and the enhancement of the main vibration suppression region.
机译:本文提出了一种具有由负刚度弹簧耦合的局部谐振器的超石料梁。首先,开发了具有所提出的耦合本地谐振器配置的分布式参数超材料束模型。由于引入负刚度弹簧,系统易于不稳定。稳定性分析表明,只要耦合弹簧的刚度变为负,无限的长的超材料梁即可变得不稳定。对于有限长的超石料梁,可以对给定负耦合弹簧实现稳定性。然后进行参数研究以研究细胞数量和晶格常数对系统稳定性的影响。计算有限长的超材料梁的透射率。结果表明,由于限制了所提出的超材料束的负刚度的可调性,因此需要对准静态振动抑制区域的出现以及主要振动抑制区域的增强所需的特定权衡。

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