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关于采用规范准晶层压板实现弹性波的纯负折射

On the adoption of canonical quasi-crystalline laminates to achieve pure negative refraction of elastic waves.

作者信息

Chen Zhijiang, Morini Lorenzo, Gei Massimiliano

机构信息

School of Engineering, Cardiff University, The Parade, Cardiff CF24 3AA, Wales, UK.

Department of Engineering and Architecture, University of Trieste, via A. Valerio 6/1, 34127 Trieste, Italy.

出版信息

Philos Trans A Math Phys Eng Sci. 2022 Nov 28;380(2237):20210401. doi: 10.1098/rsta.2021.0401. Epub 2022 Oct 10.

Abstract

A way to achieve negative refraction of elastic anti-plane shear waves is a transmission across an interface between a homogeneous substrate and a periodic transverse laminate. To achieve negative refraction, the frequency of the source should be lower than the upper limit of the second transition zone (TZ) of the harmonic spectrum of the laminate. An effective way to control the location of TZ is to consider a configuration for the laminate, a concept that originates from the properties of quasi-crystalline sequences among which the Fibonacci one is a particular case. Based on the universal structure of frequency spectrum, we provide a method based on the reduced torus to study the effect of a change in canonical ratio on the limits of the TZ. A further contribution consists in the analytical estimate of the angle of refraction for a linear relationship between frequency and longitudinal wavenumber. This is achieved by determining the components of the in-plane Poynting vector. The outcome provides a tool for the selection of a suitable laminate-substrate combination to accomplish a particular angle of the refracted wave. Finally, it is shown that for some particular configurations, the transmitted energy displays a peak that can be exploited to maximize the amount of energy travelling across the laminate. This article is part of the theme issue 'Wave generation and transmission in multi-scale complex media and structured metamaterials (part 2)'.

摘要

实现弹性反平面剪切波负折射的一种方法是让波穿过均匀基底与周期性横向层合材料之间的界面。为实现负折射,源的频率应低于层合材料谐波谱第二个过渡区(TZ)的上限。控制TZ位置的一种有效方法是考虑层合材料的一种结构配置,这一概念源于准晶序列的性质,其中斐波那契序列是一个特殊情况。基于频谱的通用结构,我们提供一种基于约化环面的方法来研究正则比变化对TZ极限的影响。进一步的贡献在于对频率与纵向波数呈线性关系时的折射角进行解析估计。这是通过确定面内坡印廷矢量的分量来实现的。该结果为选择合适的层合材料 - 基底组合以实现特定折射波角度提供了一种工具。最后表明,对于某些特定配置,透射能量会出现一个峰值,可利用该峰值使穿过层合材料的能量最大化。本文是主题为“多尺度复杂介质和结构化超材料中的波产生与传播(第2部分)”的一部分。

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