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Study of the surface wave vibrations in a functionally graded material layered structure: a WKB method

机译:在功能梯度材料层状结构中的表面波振动研究:一种WKB方法

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In this paper, a theoretical investigation is described of the propagation behaviour of Love-type waves in a functionally graded material layered structure. The Wentzel-Kramers-Brillouin (WKB) method was applied to obtain the analytical solution for the functionally graded material layer. The study was carried out to investigate the transference of Love-type waves in a functionally graded material layer bounded by a viscous fluid layer and a highly anisotropic half-space. Two cases were studied, one in which the material property variation of the functionally graded material layer was arbitrary and one in which the material property variation was taken as exponential. A variable separation method was employed to obtain the displacement components in both the viscous liquid and the highly anisotropic medium. Profound effects of material gradient coefficient, viscous coefficient, liquid mass density, initial stress parameter and wavelength on real and imaginary components of phase velocities were established. Some numerical calculations were also made. The considered model facilitates a theoretical foundation and practical application for the development of surface acoustic wave devices.
机译:在本文中,描述了在功能梯度材料层状结构中的爱型波的传播行为的理论研究。施用WEDZEL-KRAMERS-布里渊(WKB)方法以获得功能梯度材料层的分析溶液。该研究进行了研究爱型波在由粘性流体层的功能渐变材料层中的相反型波的转移和高极各向异性的半空间。研究了两种情况,其中功能梯度材料层的材料性质变化是任意的,其中材料性能变异是指数的。采用可变分离方法在粘性液体和高各向异性培养基中获得位移组分。建立了物质梯度系数,粘性系数,液体质量密度,初始应力参数和波长对阶段速度的真实和虚部分量的深刻影响。还制作了一些数值计算。考虑模型有助于了解表面声波装置的发展理论基础和实际应用。

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