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Interface crack-tip generalized stress field and stress intensity factors in transversely isotropic piezoelectric bimaterials
Authors:Z. C. Ou  Y. H. Chen
Affiliation:School of Civil Engineering and Mechanics, The State Key Laboratory of MSSV, Xi'an Jiao-Tong University, Xianning Xilu 28, Xi'an City 710049, PR China
Abstract:Transversely isotropic piezoelectric (TIP) bimaterials with an impermeable interface crack have been classified [Int. J. Frac. 119 (2003) L41] into two classes corresponding to the vanishing of the two singularity parameters or κ. It is shown in the present paper that the related eigenvalue problems for either =0 or κ=0 are not degenerate. The crack-tip generalized stress fields are obtained subsequently. A new definition of crack-tip intensity factors is presented for interface cracks in practical TIP bimaterial of practical interest. Such defined intensity factors are real numbers, which dominate the maximum crack-tip stress singularity and do not generate any phase angle change under any dimension system transformation for physical quantities.
Keywords:Piezoelectric materials   Interface crack   Singularity   Intensity factors   Crack-tip stress field
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