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In-plane elastic wave propagation and band-gaps in layered functionally graded phononic crystals
Authors:SI Fomenko  MV Golub  Ch Zhang  TQ Bui  Y-S Wang
Institution:1. Institute for Mathematics, Mechanics and Informatics, Kuban State University, Krasnodar 350040, Russia;2. Chair of Structural Mechanics, Department of Civil Engineering, University of Siegen, Paul-Bonatz Strasse 9-11, D-57076 Siegen, Germany;3. Institute of Engineering Mechanics, Beijing Jiaotong University, Beijing 100044, PR China
Abstract:In-plane wave propagation in layered phononic crystals composed of functionally graded interlayers arisen from the solid diffusion of homogeneous isotropic materials of the crystal is considered. Wave transmission and band-gaps due to the material gradation and incident wave-field are investigated. A classification of band-gaps in layered phononic crystals is proposed. The classification relies on the analysis of the eigenvalues of the transfer matrix for a unit-cell and the asymptotics derived for the transmission coefficient. Two kinds of band-gaps, where the transmission coefficient decays exponentially with the number of unit-cells are specified. The so-called low transmission pass-bands are introduced in order to identify frequency ranges, in which the transmission is sufficiently low for engineering applications, but it does not tend to zero exponentially as the number of unit-cells tends to infinity. A polyvalent analysis of the geometrical and physical parameters on band-gaps is presented.
Keywords:Functionally graded materials  Phononic crystals  Laminates  Elastic waves  Wave transmission  Band-gaps  Transfer matrix method
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