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Liouville-Green approximation: An analytical approach to study the elastic waves vibrations in composite structure of piezo material

机译:Liouville-Green近似:一种研究压电材料复合结构中弹性波振动的分析方法

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摘要

AbstractThis research article delves the study of surface waves in functionally graded piezoelectric material (FGPM) clubbed between two dissimilar piezomagnetic (PM) media. The transference of elastic waves in a composite structure is analyzed following the elastic wave theory of magneto-electro-elasticity. Liouville-Green’s (LG) approximation technique is used to solve the differential equation. The exponential variation is assumed in material gradients of FGPM stratum. It is noticed that the frequency of considered wave depends significantly on the material gradient coefficients, which may be a crucial factor to regulate the dispersion characteristics of functionally graded material (FGM) waveguides. Frequency equations have been obtained for electrically open and short cases in determinant form. The profound effect of parameters like material gradients (piezoelectric, dielectric and elastic) and width of the layers, on the phase velocity of Love type wave are presented graphically. Moreover, it is noticed that the material gradients also influences the electromechanical coupling factor. This influence has shown through the graph. Different parametric curves are merged into a single figure to increase the readability of the graphs. The magnetic potential function is derived analytically for all three gradient factors of FGPM plate. Obtained results are matched analytically and graphically with the established results.
机译: 摘要 这篇研究文章深入研究了功能梯度压电材料(FGPM)在两个不同的压电(PM)介质之间形成的表面波的研究。根据磁电弹性的弹性波理论,分析了复合结构中弹性波的传递。 Liouville-Green(LG)近似技术用于求解微分方程。在FGPM地层的材料梯度中假设了指数变化。注意,所考虑的波的频率很大程度上取决于材料梯度系数,这可能是调节功能梯度材料(FGM)波导的色散特性的关键因素。已经以行列式形式获得了电气断路和短路情况的频率方程。用图形表示了诸如材料梯度(压电,介电和弹性)和层的宽度等参数对洛夫型波的相速度的深刻影响。此外,注意到材料梯度也影响机电耦合系数。该影响已通过图表显示。将不同的参数曲线合并为一个图形,以增加图形的可读性。通过分析得出FGPM板的所有三个梯度因子的磁势函数。将获得的结果与已建立的结果进行分析和图形匹配。

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