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Rayleigh wave behavior in functionally graded magneto-electro-elastic material

机译:功能梯度磁电弹性材料中的瑞利波行为

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摘要

Piezoelectric-piezomagnetic functionally graded materials, with a gradual change of the mechanical and electromagnetic properties have greatly applying promises. Based on the ordinary differential equation and stiffness matrix methods, a dynamic solution is presented for the propagation of the wave on a semi-infinite piezomagnetic substrate covered with a functionally graded piezoelectric material (FGPM) layer. The materials properties are assumed to vary in the direction of the thickness according to a known variation law. The phase and group velocity of the Rayleigh wave is numerically calculated for the magneto-electrically open and short cases, respectively. The effect of gradient coefficients on the phase velocity, group velocity, coupled magneto-electromechanical factor, on the stress fields, the magnetic potential and the mechanical displacement are discussed, respectively. Illustration is achieved on the hetero-structure PZT-5A/CoFe_2O_4; the obtained results are especially useful in the design of high-performance acoustic surface devices and accurately prediction of the Rayleigh wave propagation behavior.
机译:压电-压电功能梯度材料随着机械和电磁性能的逐渐变化而具有广阔的应用前景。基于常微分方程和刚度矩阵方法,提出了一种动态解决方案,用于在功能梯度压电材料(FGPM)层覆盖的半无限压电磁体上传播波。假定材料特性根据已知的变化规律在厚度方向上变化。分别针对磁电打开和短路情况,分别计算了瑞利波的相位和群速度。分别讨论了梯度系数对相速度,群速度,磁电耦合因子,应力场,磁势和机械位移的影响。对异质结构PZT-5A / CoFe_2O_4进行了图解说明;获得的结果对于高性能声学表面装置的设计和瑞利波传播行为的准确预测特别有用。

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