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BEM analysis of electrically limited permeable cracks considering Coulomb tractions in piezoelectric materials

机译:考虑压电材料中库仑牵引的电限制渗透裂纹的BEM分析

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摘要

In this paper, the electrically limited permeable piezoelectric cracks considering the induced Coulomb tractions on the crack faces are studied with respect to the dielectric constant of the crack medium by BEM. As limiting cases, the permeable and impermeable electric crack-face boundary conditions are also considered. Based on the dual boundary integral equations, the crack-tip field intensity factors and the energy release rate are evaluated by the displacement extrapolation method and the J-integral method, respectively. The crack-face part of the contour integral is then handled by two approaches, namely numerical quadrature and approximate formula. The analytical solutions for a Griffith crack are also presented for verification purpose. Three examples are presented to check the efficiency and the accuracy of these approaches. The effects of the dielectric constant of the crack medium and the induced Coulomb tractions on the crack-tip field intensity factors and the energy release rate are also discussed.
机译:在本文中,研究了考虑到裂纹面的库仑牵引力的电限制的渗透性压电裂纹,并利用BEM研究了裂纹介质的介电常数。作为极限情况,还考虑了可渗透和不可渗透的电裂纹面边界条件。基于对偶边界积分方程,采用位移外推法和J积分法分别评价裂纹尖端场强因子和能量释放率。然后用两种方法处理轮廓积分的裂纹面部分,即数值正交和近似公式。格里菲斯裂纹的解析解也被提出用于验证目的。给出了三个例子来检查这些方法的效率和准确性。还讨论了裂纹介质的介电常数和诱导的库仑牵引力对裂纹尖端场强因子和能量释放速率的影响。

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