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Fracture behaviour of cracks in piezoelectric media with electromechanically coupled boundary conditions

机译:机电耦合边界条件下压电介质中裂纹的断裂行为

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Existing studies on slit crack problems have been limited mostly to the electrically impermeable and permeable crack models, which represent the limiting cases of the physical boundary condition. This paper studies the generalized plane problem of a crack in a piezoelectric medium, with the electric boundary condition along the crack surfaces being governed by its opening displacement. The theoretical formulation of this nonlinear problem is based on the use of Fourier transforms and the solution of a system of integral equations, which are solved using Chebyshev polynomials. The analytical solution of the problem clearly shows the transition between permeable and impermeable models with increasing crack opening. Depending on the applied mechanical and electric loads, different modes of crack deformation are predicted and discussed. [References: 22]
机译:现有的关于裂隙裂纹问题的研究主要限于电不渗透和可渗透的裂纹模型,它们代表了物理边界条件的有限情况。本文研究了压电介质中裂纹的广义平面问题,沿裂纹表面的电边界条件受其开口位移的控制。这个非线性问题的理论表述基于傅立叶变换的使用和积分方程组的解,这些方程使用Chebyshev多项式求解。该问题的解析解决方案清楚地表明,随着裂缝开度的增加,可渗透模型与不可渗透模型之间的过渡。根据所施加的机械和电气负载,可以预测和讨论不同的裂纹变形模式。 [参考:22]

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