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Out-of-plane interface cracks in dissimilar piezoelectric materials
Authors:B L Wang  Y G Sun
Institution:(1) Department of Mechanical Engineering, Aeronautical Engineering Building JH, The University of Sydney, Sydney, NSW, 2006, Australia;(2) Center for Composite Materials, Harbin Institute of Technology, 1247, Harbin, 150001, P.R. China
Abstract:Summary This paper investigates the problem of an anti-plane interfacial crack between two dissimilar piezoelectric material layers. A single crack is first considered. The effect of interaction of two collinear cracks in the medium on the field intensity factors is investigated. The solutions of several particular cases, including an infinite piezoelectric bi-material and a piezoelectric material bonded to an elastic medium, are given. The bi-material constants governing the behavior of the crack tip fields are identified. By considering the crack as a notch of finite thickness, it is shown that the thickness of the notch has a pronounced influence on the crack tip field. The results for the assumption of a permeable crack represent the limit case where the notch thickness is reduced to zero.BLW would like to thank the National Science Foundation of China (#10102004) and the City University of Hong Kong (DAG #7100219) for the support of this work. YGS also thanks the Multidiscipline Scientific Research Foundation Project (HIT. MD 2001. 39) of the Harbin Institute of Technology and the SRF for ROCS, SEM.accepted for publication 3 April 2003
Keywords:Fracture  Electromechanics  Piezoelectricity  Notch  Collinear cracks
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