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横观各向同性介质中椭圆夹杂受非弹性剪切变形引起的弹性场的确定
引用本文:郭磊 聂国华 Chan Cheong-ki.横观各向同性介质中椭圆夹杂受非弹性剪切变形引起的弹性场的确定[J].上海力学,2005,26(4):599-603.
作者姓名:郭磊  聂国华  Chan  Cheong-ki
作者单位:[1]同济大学应用力学研究所,上海200092 [2]盐城工学院基础部,江苏盐城224003 [3]香港理工大学应用数学系,香港
基金项目:教育部“新世纪优秀人才支持计划”资助项目
摘    要:本文求解了横观各向同性介质中椭圆夹杂内受非弹性剪切变形引起的弹性场。采用各向异性弹性力学平面问题的复变函数解法,结合保角变换,获得夹杂内应变能和基体内边界的应力分布和相应的应变能的表达式。进一步,根据最小应变能原理,获得表征夹杂平衡边界的两个特征剪切应变,从而得到了弹性场的解析解。通过应力转换关系,验证了应力解满足夹杂边界上法向正应力和剪应力的连续条件,表明了该解的正确性。本文解可用于复合材料断裂强度的分析中。

关 键 词:复变函数方法  保角变换  横观各向同性  椭圆夹杂  非弹性剪切变形
文章编号:0254-0053(2005)04-599-5
收稿时间:2005-04-30
修稿时间:2005年4月30日

Determination on Elastic Fields Induced by Non-Elastic Shear Deformation with an Elliptic Inhomogeneity in Transversely Isotropic Media
GUO Lei, NIE Guo-hua, CHAN Cheong-ki.Determination on Elastic Fields Induced by Non-Elastic Shear Deformation with an Elliptic Inhomogeneity in Transversely Isotropic Media[J].Chinese Quarterly Mechanics,2005,26(4):599-603.
Authors:GUO Lei  NIE Guo-hua  CHAN Cheong-ki
Affiliation:1. Institute of Applied Mechanics, Tongji University, Shanghai 200092, China; 2. Yancheng Institute of Technology Yancheng 224003, China;3. Department of Applied Mathematics, Hong Kong Polytechnic University, Hong Kong
Abstract:The elastic fields induced by non-elastic shear deformations with an elliptic inhomongeneity embedded in the transversely isotropic matrix were presented. Conformal transformation and complex function method for anisotropic elastic media were used to determine the strain energy in the inhomongeneity, the stress distributions in the matrix at the interior boundary of the inhomongeneity and corresponding strain energy in the matrix. Further, two characteristic shear strains associated with the equilibrium boundary of the inhomongeneity were obtained by the use of principle of minimum strain energy, and the analytical solutions for the elastic fields were thus derived. The present solutions are proven to satisfy the continuity conditions for normal and shearing stresses on the surface of the ellipse, and can be applied to analysis the fracture behavior of such composite materials.
Keywords:complex function method  conformal transformation  transversely isotropic  elliptic inhomongeneiy  non-elastic shear deformation
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