Discrete scattering and meta-arrest of locally resonant elastic wave metamaterials with a semi-infinite crack

Author:

Huang Kuan-Xin1,Shui Guo-Shuang1,Wang Yi-Ze2ORCID,Wang Yue-Sheng12

Affiliation:

1. Institute of Engineering Mechanics, Beijing Jiaotong University, Beijing 100044, People's Republic of China

2. Department of Mechanics, Tianjin University, Tianjin 300350, People's Republic of China

Abstract

Previous investigations on wave scattering and crack propagation in the discrete periodic structure are concentrated on the conditional mass–spring model, in which the internal mass is not included. In this work, elastic wave metamaterials with local resonators are studied to show the scattering of elastic waves by a semi-infinite crack and the arrest behaviour. The influences of internal mass–spring structure are analysed and the discrete Wiener–Hopf method is used to obtain the displacement solution. Numerical calculations are performed to show that the dynamic negative effective mass and band gaps can be observed owing to the local resonance of the internal mass. Therefore, the scattering of an elastic wave with a specific frequency by a semi-infinite crack can be avoided by tuning the structural parameters. Moreover, the energy release ratio which characterizes the splitting resistance is presented and the meta-arrest performance is found. It is expected that this study will increase understanding of how to control the scattering characteristics of elastic waves by a semi-infinite crack in locally resonant metamaterials and also help to improve their fracture resistance.

Funder

National Natural Science Foundation of China

Publisher

The Royal Society

Subject

General Physics and Astronomy,General Engineering,General Mathematics

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