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Two parallel symmetry permeable cracks in functionally graded piezoelectric/piezomagnetic materials under anti-plane shear loading

机译:反梯度剪切载荷作用下功能梯度压电/压电材料中的两个平行对称渗透裂纹

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In this paper, the behavior of two parallel symmetry permeable cracks in functionally graded piezoelectric/piezomagnetic materials subjected to an anti-plane shear loading is investigated. To make the analysis tractable, it is assumed that the material properties c(44), e(15), e(11), q(15), d(11) and mu(11) vary exponentially with coordinate parallel to the crack. By using the Fourier transform, the problem can be solved with the help of two pairs of dual integral equations in which the unknown variables are the jumps of the displacements across the crack surfaces. These equations are solved using the Schmidt method. The normalized stress, the electrical displacement and the magnetic flux intensity factors are determined for different geometric for the permeable electric boundary conditions. Numerical examples are provided to show the effect of the geometry of the interacting crack and the parameter beta describing the functionally graded materials upon the stress intensity factor of the cracks. (C) 2004 Elsevier Ltd. All rights reserved.
机译:本文研究了功能梯度压电/压电材料中两个平行对称的可渗透裂纹在反平面剪切载荷作用下的行为。为了使分析容易进行,假设材料特性c(44),e(15),e(11),q(15),d(11)和mu(11)随平行于裂纹的坐标呈指数变化。通过使用傅立叶变换,可以借助两对对偶积分方程来解决该问题,其中未知变量是跨裂纹表面位移的跳跃。这些方程使用Schmidt方法求解。对于可渗透的电边界条件,针对不同的几何确定归一化应力,电位移和磁通强度因子。提供了数值示例,以显示相互作用的裂纹的几何形状和描述功能梯度材料对裂纹的应力强度因子的参数β的影响。 (C)2004 Elsevier Ltd.保留所有权利。

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