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Surface crack problem for functionally graded magnetoelectroelastic coating-homogeneous elastic substrate system under anti-plane mechanical and in-plane electric and magnetic loading

机译:功能梯度磁电弹性涂层-均匀弹性基体系统在反平面机械和平面内电磁力作用下的表面裂纹问题

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摘要

A functionally graded magnetoelectroelastic material layer bonded to a homogeneous elastic substrate is investigated. The functionally graded magnetoelectroelastic layer contains a surface crack that is perpendicular to the surface of the medium. The structure is subjected to anti-plane mechanical and in-plane electric and magnetic loads, the crack problem involves the anti-plane elastic field coupled with the in-plane electric and magnetic field. The elastic layer can be an ideal insulator or an ideal conductor. Integral transform and dislocation density functions are employed to reduce the problem to the solution of a system of singular integral equations. Numerical results show the influences of the material gradient parameter and crack configuration on field intensity factors and energy release rates of the functionally graded magnetoelectroelastic coating-homogeneous elastic substrate structure.
机译:研究了粘合到均质弹性基材上的功能梯度磁电弹性材料层。功能梯度磁电弹性层包含垂直于介质表面的表面裂纹。该结构承受反平面的机械和平面的电磁力,裂纹问题涉及反平面的弹性场和平面的电磁场。弹性层可以是理想的绝缘体或理想的导体。采用积分变换和位错密度函数将问题简化为奇异积分方程组的解。数值结果表明,材料梯度参数和裂纹形态对功能梯度磁电弹性涂层均质弹性基底结构的场强因子和能量释放率的影响。

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