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SH-wave propagation and resonance phenomena in a periodically layered composite structure with a crack
Authors:Mikhail V Golub  Chuanzeng Zhang
Institution:a Institute for Mathematics, Mechanics and Informatics, Kuban State University, Krasnodar 350040, Russia
b Department of Civil Engineering, University of Siegen, D-57068 Siegen, Germany
c Institute of Engineering Mechanics, Beijing Jiaotong University, Beijing 100044, People's Republic of China
Abstract:This paper presents a dynamic analysis of time-harmonic plane SH-waves propagating in periodically multilayered elastic composites with a strip-like crack. The total wave field in the multilayered elastic structure is described as a sum of incident wave field modeled by the transfer matrix method and the scattered wave field governed by an integral representation containing the crack-opening-displacement. The integral equation derived from the boundary conditions on the crack-faces is solved numerically by a Galerkin method. The paper focuses on resonant and non-resonant regimes of anti-plane wave motion in a stack of elastic layers weakened by a single strip-like crack and wave localization in the vicinity of the crack. The scattered extra displacement induced by the presence of the crack is investigated in detail for both situations of high and low contrast in material properties. Numerical results for the average crack-opening-displacement, the transmission coefficient, the stress intensity factor and the average energy flow are presented and discussed to reveal wave resonance and localization phenomena within the band-gaps and the pass-bands.
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