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Propagation of an anti-plane moving crack in a functionally graded piezoelectric strip
Authors:B Jin  A K Soh and Z Zhong
Institution:(1) Department of Engineering Mechanics Tongji University, Key Laboratory of Solid Mechanics of MOE, Shanghai, 200092, P. R. China;(2) Department of Mechanical Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong
Abstract:Summary The propagation of an anti-plane moving crack in a functionally graded piezoelectric strip (FGPS) is studied in this paper. The governing equations for the proposed analysis are solved using Fourier cosine transform. The mixed boundary value problems of the anti-plane moving crack, which is assumed to be either impermeable or permeable, are formulated as dual integral equations. By appropriate transformations, the dual integral equations are reduced to Fredholm integral equations of the second kind. For the impermeable crack, the stress intensity factor (SIF) of the crack in the FGPS depends on both the mechanical and electric loading, whereas, the SIF for the permeable crack depends only on the mechanical loading. The results obtained show that the gradient parameter of the FGPS and the velocity of the crack have significant influence on the dynamic SIF.Support from the Research Grants Council of the Hong Kong Special Administrative Region, China (Project No. HKU 7081/00E) is acknowledged. Support from the National Natural Science Foundation of China (Project No. 10072041) is also acknowledged.
Keywords:Piezoelectric strip  Functionally graded material  Moving crack  Stress and electric field intensity factors  Dynamic fracture
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