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首页> 外文期刊>Waves in random and complex media >Love-type waves in functionally graded piezoelectric material (FGPM) sandwiched between initially stressed layer and elastic substrate
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Love-type waves in functionally graded piezoelectric material (FGPM) sandwiched between initially stressed layer and elastic substrate

机译:功能梯度压电材料(FGPM)中的Love型波夹在初始应力层和弹性基底之间

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This paper investigates the propagation behavior of Love-type surface waves in three-layered composite structure with initial stress. The composite structure has been taken in such a way that a functionally graded piezoelectric material (FGPM) layer is bonded between initially stressed piezoelectric upper layer and an elastic substrate. Using the method of separation of variables, frequency equation for the considered wave has been established in the form of determinant for electrical open and short cases on free surface. The bisection method iteration technique has been used to find the roots of the dispersion relations which give the modes for electrical open and short cases. The effects of gradient variation of material constant and initial stress on the phase velocity of surface waves are discussed. Dependence of thickness on each parameter of the study has been shown explicitly. Study has been also done to show the existence of cut-off frequency. Graphical representation has been done to exhibit the findings. The obtained results are significant for the investigation and characterization of Love-type waves in FGPM-layered media.
机译:本文研究了洛夫型表面波在三层复合结构中初始应力的传播行为。采用这种复合结构的方式是,将功能渐变的压电材料(FGPM)层粘合在初始受力的压电上层和弹性基材之间。使用变量分离的方法,以决定因素的形式建立了所考虑的波的频率方程,以决定自由表面上的电气开路和短路情况。二等分方法迭代技术已被用于寻找色散关系的根源,该色散关系给出了电气开和短路情况的模式。讨论了材料常数和初始应力梯度变化对表面波相速度的影响。厚度对研究的每个参数的依赖性已明确显示。还进行了研究以显示截止频率的存在。已经完成了图形表示以展示发现。获得的结果对于研究和表征FGPM层介质中的Love型波具有重要意义。

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