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通过机电电路类比实现双负弹性超材料设计

Double negative elastic metamaterial design through electrical-mechanical circuit analogies.

作者信息

Pope Simon A

出版信息

IEEE Trans Ultrason Ferroelectr Freq Control. 2013 Jul;60(7):1467-74. doi: 10.1109/TUFFC.2013.2718.

Abstract

Previous studies into solid elastic metamaterials which have a simultaneously negative effective bulk modulus and density have proposed designs for materials with relatively narrow bandwidths, because of the reliance on resonators to provide the dispersive material properties. Some of the proposed novel applications for metamaterials, such as invisibility cloaks and sub-wavelength lenses, generally require materials with inherently larger bandwidths for practical exploitation. In this paper, a well-known electromagnetic metamaterial design is used together with the electrical-mechanical circuit analogies to propose a simultaneously double negative elastic metamaterial design which does not suffer from the narrow bandwidth constraints of previous designs. An interesting consequence of the proposed design is that it has an effective wavelength which asymptotically goes to infinity with frequency.

摘要

先前对具有同时为负的有效体积模量和密度的固体弹性超材料的研究,由于依赖谐振器来提供色散材料特性,提出了带宽相对较窄的材料设计。超材料一些已提出的新颖应用,如隐形斗篷和亚波长透镜,通常需要具有固有更大带宽的材料才能实际应用。在本文中,一种著名的电磁超材料设计与机电电路类比相结合,提出了一种同时具有双负特性的弹性超材料设计,该设计不受先前设计的窄带宽限制。所提出设计的一个有趣结果是,它具有一个有效波长,该波长随频率渐近趋于无穷大。

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