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A Piezoelectric Screw Dislocation in a Three-phase Composite Cylinder Model with Electrically Conductive Interfacial Rigid Lines

机译:导电界面刚性线的三相复合圆柱模型中的压电螺杆错位

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The problem of the electro-elastic coupling interaction between a piezoelectric screw dislocation and a three-phase circular inclusion with interfacial electrically conductive rigid lines (anti-cracks) is investigated. An efficient and concise method for complex multiply connected region is developed, in terms of which explicit series form solutions of the complex potentials in the matrix, the interphase layer and the inclusion regions are derived. Based on the complex potentials, the image force on the piezoelectric screw dislocation is then calculated by using the generalized Peach-Koehler formula. The equilibrium position of the dislocation is discussed in detail for various rigid line geometries, intrephase layer thicknesses, and piezoelectric material property combinations. The main results show that the interfacial rigid lines have significant perturbation effect on the motion of the piezoelectric screw dislocation near the circular inclusion surrounded by an interphase layer. The solutions of complex potentials in the article can be used as Green's functions to solve the problem on the interaction between interfacial rigid lines and arbitrary shape cracks in piezoelectric composites.
机译:研究了压电螺钉位错与三相圆形夹杂物之间的电弹性耦合相互作用问题,该界面具有界面导电刚性线(抗裂)。提出了一种有效而简捷的复杂多重连接区域的方法,并据此导出了矩阵,相间层和包含区域中复杂电势的显式级数形式的解。基于复数电势,然后使用广义的Peach-Koehler公式计算压电螺钉位错上的像力。对于各种刚性线的几何形状,同相层厚度和压电材料特性组合,将详细讨论位错的平衡位置。主要结果表明,界面刚性线对由相间层围绕的圆形夹杂物附近的压电螺杆位错的运动具有明显的扰动作用。本文中复杂电位的解可以作为格林函数来解决压电复合材料中界面刚性线与任意形状裂纹之间的相互作用问题。

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