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Shear horizontal surface waves in a functionally graded magneto-electro-elastic half-space

机译:剪切水平表面波在功能梯度的磁电 - 电弹性半空间中

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We investigate the propagation of shear horizontal (SH) surface waves in a functionally graded magneto-electro-elastic half-space with hexagonal (6 mm) symmetry. The material properties vary in the direction perpendicular to the free surface. The surface of the half-space is mechanically free, but subjected to four types of electromagnetic boundary conditions. These boundary conditions are electrically open/magnetically closed, electrically open/magnetically open, electrically closed/magnetically open and electrically closed/magnetically closed. The effects of the electromagnetic boundary conditions and the variation of material properties on the propagation characteristics of SH surface waves are analyzed. The results obtained show that except for the electrically open/magnetically closed condition, three sets of other electromagnetic boundary conditions sustain the propagation of SH surface waves. Different from the case in homogeneous materials, the existing SH surface waves in functionally graded half-spaces are dispersive.
机译:我们研究剪切水平(SH)表面波在具有六边形(6mm)对称的功能分级磁力电弹性半空间中的传播。材料特性在垂直于自由表面的方向上变化。半空间的表面是机械自由的,但经受四种类型的电磁边界条件。这些边界条件是电开/磁闭,电开/磁通,电闭合/磁性开口和电闭合/磁性封闭的。分析了电磁边界条件的影响和材料性质对SH表面波的传播特性的影响。结果表明,除了电开/磁闭条件外,三组其他电磁边界条件维持SH表面波的传播。与均匀材料中的情况不同,现有的SH表面波在功能渐变的半空间中是分散的。

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