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Propagation of Love waves in a functionally graded piezoelectric material (FGPM) layered composite system

机译:功能梯度压电材料(FGPM)层状复合系统中Love波的传播

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摘要

In this theoretical study. we investigate the propagation of Love waves in a layered structure consisting of two different homogenous piezoelectric materials, an upper layer and a substrate. A functionally graded piezoelectric material (FGPM) buffer layer is in between the upper layer and the substrate. We employ the power series technique to solve the governing differential equations with variable coefficients. The influence of the gradient coefficients of FGPM and the layer thicknesses on the dispersion relations, the electro-mechanical coupling factor, and the stress distributions of Love waves in this structure are investigated. We demonstrate that the low gradient coefficient raises the significant variation of the phase velocity within a certain range of ratios of upper layer thickness to equivalent thickness. The electro-mechanical coupling factor can be increased when the equivalent thickness equals one or two wavelengths, and the discontinuity of the interlaminar stress can be eliminated by the FGPM buffer layer. The theoretical results set guidelines not only for the design of high-performance surface acoustic wave (SAW) devices using the FGPM buffer layer, but also for the measurement of material properties in such FGPM layered structures using Love waves.
机译:在此理论研究中。我们研究了Love波在由两种不同的均质压电材料,上层和基底组成的分层结构中的传播。功能梯度压电材料(FGPM)缓冲层位于上层和基板之间。我们采用幂级数技术来求解具有可变系数的控制微分方程。研究了FGPM梯度系数和层厚对结构中色散关系,机电耦合因子和洛夫波应力分布的影响。我们证明了低梯度系数在上层厚度与等效厚度之比的一定范围内提高了相速度的显着变化。当等效厚度等于一个或两个波长时,可以增加机电耦合系数,并且可以通过FGPM缓冲层消除层间应力的不连续性。理论结果不仅为使用FGPM缓冲层的高性能表面声波(SAW)器件设计,而且为使用Love波测量此类FGPM分层结构中的材料性能设置了准则。

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