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首页> 外文期刊>Mechanical Engineering Journal >Stress intensity factor of a crack normal to the interface between a homogeneous and a functionally graded piezoelectric layers under an electric load
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Stress intensity factor of a crack normal to the interface between a homogeneous and a functionally graded piezoelectric layers under an electric load

机译:在电负载下均匀和功能渐变压电层之间的裂缝裂缝的应力强度因子

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In this paper, the fracture problem of a functionally graded piezoelectric material strip (FGPM strip) containing a crack perpendicular to the interface between the FGPM strip and a homogeneous layer under an electric load is considered. Material properties are assumed to be exponentially dependent on the distance from the interface. The superposition technique is used to solve the governing equations. The stresses induced by the electric load in the un-cracked laminate are calculated, and the obtained normal stress is used as the crack surface tractions with opposite sign to formulate the mixed boundary value problem. By using the Fourier transforms, the electro-mechanical fracture problem is reduced to a singular integral equation, which is solved numerically. The stress intensity factors of the internal crack and the edge crack are computed and presented for the various values of the nonhomogeneous and geometric parameters.
机译:在本文中,考虑了垂直于FGPM条带垂直于电荷的垂直于FGPM条带和均匀层的裂缝的功能梯度压电材料条(FGPM条带)的断裂问题。假设材料属性是指数依次取决于距离接口的距离。叠加技术用于解决控制方程。计算由未破裂的层压板中的电负载诱导的应力,并且获得的正常应力用作具有相反标志的裂纹表面牵引,以配制混合边值问题。通过使用傅里叶变换,电力裂缝问题减少到数值上的奇异积分方程。内部裂缝和边缘裂纹的应力强度因子被计算并呈现出非均匀和几何参数的各种值。

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