Dynamic fracture behavior of an internal interfacial crack between two dissimilar magneto-electro-elastic plates

被引:50
作者
Feng, W. J. [1 ]
Pan, E. [2 ]
机构
[1] Shijiazhuang Railway Inst, Dept Engn Mech, Shijiazhuang 050043, Peoples R China
[2] Univ Akron, Dept Civil Engn, Akron, OH 44325 USA
基金
中国国家自然科学基金;
关键词
impact; magneto-electro-elastic plate; interfacial crack; dynamic energy release rate; singular integral equation; finite Fourier transform;
D O I
10.1016/j.engfracmech.2007.07.001
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
In this paper, the anti-plane problem for an interfacial crack between two dissimilar magneto-electro-elastic plates subjected to anti-plane mechanical and in-plane magneto-electrical impact loadings is investigated. Four kinds of crack surface conditions are adopted: magneto-electrically impermeable (Case 1), magnetically impermeable and electrically permeable (Case 2), magnetically permeable and electrically impermeable (Case 3), and magneto-electrically permeable (Case 4). The position of the interfacial crack is arbitrary. The Laplace transform and finite Fourier transform techniques are employed to reduce the mixed boundary-value problem to triple trigonometric series equations in the Laplace transform domain. Then the dislocation density functions and proper replacements of the variables are introduced to reduce the series equations to a standard Cauchy singular integral equation of the first kind. The resulting integral equation together with the corresponding single-valued condition is approximated as a system of linear algebra equations, which can easily be solved. Field intensity factors and energy release rates are determined and discussed. The effects of loading combination parameters on dynamic energy release rate are plotted for Cases 1-3. On the other hand, since the magneto-electrically permeable condition is perhaps more physically reasonable for type III crack, the effect of the crack configuration on the dynamic fracture behavior of the crack tips is studied in detail for Case 4. The results could be useful for the design of multilayered magneto-electro-elastic structures and devices. (C) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:1468 / 1487
页数:20
相关论文
共 29 条
[1]   MAGNETOELECTRIC EFFECT IN PIEZOELECTRIC MAGNETOSTRICTIVE MULTILAYER (2-2) COMPOSITES [J].
AVELLANEDA, M ;
HARSHE, G .
JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 1994, 5 (04) :501-513
[2]   MAGNETOELECTRIC EFFECT IN FIBROUS COMPOSITES WITH PIEZOELECTRIC AND PIEZOMAGNETIC PHASES [J].
BENVENISTE, Y .
PHYSICAL REVIEW B, 1995, 51 (22) :16424-16427
[3]   Scattering of anti-plane shear waves by a partially debonded magneto-electro-elastic circular cylindrical inhomogeneity [J].
Du, JK ;
Shen, YP ;
Ye, DY ;
Yue, FR .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2004, 42 (8-9) :887-913
[4]   NUMERICAL SOLUTION OF SINGULAR INTEGRAL-EQUATIONS [J].
ERDOGAN, F ;
GUPTA, GD .
QUARTERLY OF APPLIED MATHEMATICS, 1972, 29 (04) :525-&
[5]   Dynamic internal crack problem of a functionally graded magneto-electro-elastic strip [J].
Feng, W. J. ;
Su, R. K. L. .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2006, 43 (17) :5196-5216
[6]   Scattering of SH waves by an arc-shaped interface crack between a cylindrical magneto-electro-elastic inclusion and matrix with the symmetry of 6 mm [J].
Feng, W. J. ;
Su, R. K. L. ;
Liu, Y. Q. .
ACTA MECHANICA, 2006, 183 (1-2) :81-102
[7]   Crack growth of an interface crack between two dissimilar magneto-electro-elastic materials under anti-plane mechanical and in-plane electric magnetic impact [J].
Feng, WJ ;
Xue, Y ;
Zou, ZZ .
THEORETICAL AND APPLIED FRACTURE MECHANICS, 2005, 43 (03) :376-394
[8]   Fracture mechanics for a mode III crack in a magnetoelectroelastic solid [J].
Gao, CF ;
Tong, P ;
Zhang, TY .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2004, 41 (24-25) :6613-6629
[9]   Crack problems in magnetoelectroelastic solids. Part I: exact solution of a crack [J].
Gao, CF ;
Kessler, H ;
Balke, H .
INTERNATIONAL JOURNAL OF ENGINEERING SCIENCE, 2003, 41 (09) :969-981
[10]  
Harshe G., 1993, International Journal of Applied Electromagnetics in Materials, V4, P161