Tuning the band structure of assembled anti-tetrachiral metamaterials

被引:0
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作者
Yajun Xin
Cong Wang
Han Wang
Jinxin Yao
Yongtao Sun
Shuliang Cheng
机构
[1] Yanshan University,Key Laboratory of Green Construction and Intelligent Maintenance for Civil Engineering of Hebei Province
[2] Yanshan University,Hebei Province Low
[3] Yanshan University,Carbon and Clean Building Heating Technology Innovation Center
[4] Tianjin University,Key Laboratory of Mechanical Reliability for Heavy Equipment and Large Structure of Hebei Province
[5] Shijiazhuang Tiedao University,Department of Mechanics and Tianjin Key Laboratory of Nonlinear Dynamics and Control
来源
Applied Physics B | 2022年 / 128卷
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摘要
Metamaterials with synthetic repeating units can achieve plane wave attenuation through the local resonance inside the microstructure units and produce extraordinary physical properties under the excitation of low-frequency elastic waves. In this work, innovative assembled anti-tetrachiral metamaterials (AAMs) with deformable curved ligaments were proposed, in which soft rubber-coated mass inclusions were embedded as resonators to construct low-frequency band gaps. Band structures, formation mechanisms of the band gaps, effects of the resonator configuration on the band gaps and elastic wave transmissions of the finite structures were systematically studied by means of finite element simulation. Additionally, reversible deformations caused by external tensile strains were introduced to the boundary of global artificial metamaterials which composed of nearly incompressible hyperelastic materials to realize band gap tuning. Numerical results showed that the carefully designed metastructures easily create low frequency and tunable band gaps, and the potential application value of our metamaterials in vibration and noise reduction projects was demonstrated.
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