Stabilise and symmetrise the deformation of buckling metamaterial for tunable vibration bandgaps

Encai Liu, X. Fang, Peidong Zhu, Jihong Wen
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Abstract

Mechanical metamaterials have attracted extensive attention. This paper reports a metamaterial with tunable elastic wave bandgaps based on bistable buckling structure. First, we find that deformation of two symmetric buckling shells is intrinsically asymmetric, which blocks the realisation of robust tunability. Based on an analytical model, we clarify that the mechanisms for this intrinsic asymmetricity are the bifurcations on force–deformation curves. Then we propose a superposition method of buckling shells, which can realise the symmetric deformation for robust tunable stiffness. Using this variable-stiffness oscillator, we design a metamaterial sandwich beam, and numerically and experimentally demonstrate its tunable bandgap for vibration suppression. This paper presents the unusual deformation process of buckling elements widely used for constructing metamaterials, and provides a robust way to realise metamaterials with tunable vibration bandgaps.
在可调振动带隙中稳定和对称屈曲材料的变形
机械超材料引起了广泛的关注。本文报道了一种基于双稳屈曲结构的弹性波带隙可调的超材料。首先,我们发现两个对称屈曲壳的变形本质上是不对称的,这阻碍了鲁棒可调性的实现。基于解析模型,我们阐明了这种内在不对称的机制是力-变形曲线的分岔。在此基础上,提出了一种屈曲壳的叠加方法,该方法可以实现具有鲁棒可调刚度的对称变形。利用该变刚度振荡器设计了一种超材料夹层梁,并通过数值和实验验证了其可调带隙抑制振动的效果。本文介绍了广泛用于构造超材料的屈曲元件的异常变形过程,为实现具有可调振动带隙的超材料提供了一种可靠的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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