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Flexural wave propagation and vibration isolation characteristics of sandwich plate-type elastic metamaterials

机译:夹层板型弹性超材料的弯曲波传播与振动隔离特性

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摘要

Sandwich structures are widely used in the fields of aerospace, automobile as well as ship and offshore structures because of their excellent mechanical performances such as lightweight, high specific strength and high specific stiffness. In this study, the flexural wave band gaps and vibration isolation characteristics of sandwich plate-type elastic metamaterials are numerically and experimentally investigated. The proposed sandwich plate-type elastic metamaterials are constituted of local resonant stubs periodically deposited on a sandwich plate with periodic thin-wall aluminium tube cores. An efficient finite element method combined with a solid-shell coupling method and Bloch periodic boundary conditions is presented and validated by experimental measurements to calculate the dispersion relations and the acceleration frequency responses of sandwich plate-type elastic metamaterials. The influences of geometric parameters on the flexural wave band gaps are performed and discussed. Results show that the proposed sandwich plate-type elastic metamaterials can yield flexural wave band gaps in the low-frequency range and show significant performance on the flexural vibration isolation. Moreover, the flexural wave band gaps can be effectively modulated by the geometric parameters.
机译:夹层结构因其轻质、高比强度、高比刚度等优良的力学性能,在航空航天、汽车、船舶和海洋结构等领域得到了广泛的应用。本文对夹芯板型弹性超材料的弯曲波带隙和隔振特性进行了数值和实验研究。所提出的夹层板型弹性超材料由周期性沉积在具有周期性薄壁铝管芯的夹层板上的局部共振短柱构成。提出了一种有效的有限元方法,结合固体-壳耦合方法和布洛赫周期边界条件,计算了夹层板型弹性超材料的色散关系和加速度频率响应,并通过实验进行了验证。研究了几何参数对弯曲波带隙的影响。结果表明,所提出的夹芯板型弹性超材料能够在低频范围内产生弯曲波带隙,并在弯曲振动隔离方面表现出显著的性能。此外,弯曲波带隙可以通过几何参数进行有效调制。

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