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Two-Dimensional Composite Acoustic Metamaterials of Rectangular Unit Cell from Pentamode to Band Gap

Qi Li, Ke Wu, Mingquan Zhang

2021Crystals14 citationsDOIOpen Access PDF

Abstract

Pentamode metamaterials have been receiving an increasing amount of interest due to their water-like properties. In this paper, a two-dimensional composite pentamode metamaterial of rectangular unit cell is proposed. The unit cells can be classified into two groups, one with uniform arms and the other with non-uniform arms. Phononic band structures of the unit cells were calculated to derive their properties. The unit cells can be pentamode metamaterials that permit acoustic wave travelling or have a total band gap that impedes acoustic wave propagation by varying the structures. The influences of geometric parameters and materials of the composed elements on the effective velocities and anisotropy were analyzed. The metamaterials can be used for acoustic wave control under water. Simulations of materials with different unit cells were conducted to verify the calculated properties of the unit cells. The research provides theoretical support for applications of the pentamode metamaterials.

Topics & Concepts

MetamaterialAcousticsUnit (ring theory)AnisotropyAcoustic metamaterialsBand gapMaterials scienceComposite numberPhysicsOpticsOptoelectronicsComposite materialMathematicsMathematics educationAcoustic Wave Phenomena ResearchSpeech and Audio ProcessingUnderwater Acoustics Research