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On the characteristics of shear acoustic waves propagating in an imperfectly bonded functionally graded piezoelectric layer over a piezoelectric cylinder

机译:关于在压电圆柱体上不完全粘结的功能梯度压电层中传播的切变声波的特性

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摘要

A theoretical approach is taken into consideration to investigate the propagation behaviour of shear acoustic waves in a piezoelectric cylindrical layered structure composed of a piezoelectric material cylinder imperfectly bonded to a concentric functionally graded piezoelectric material (FGPM) cylindrical layer of finite width. The functional gradient in the FGPM cylindrical layer is considered to vary continuously along the radial direction (function of radial coordinate), and the imperfection of the interface of the cylindrical structure is taken into account which may practically exist due to some mechanical and/or electrical damage. By means of mathematical transformation, the governing electromechanical coupled field differential equations are reduced to Bessel's equations. An analytical treatment has been employed to determine the dispersion relations of propagating shear acoustic waves for both electrically short and electrically open conditions, which are further validated by reducing the obtained results to the pre-established standard results and classical Love wave equation as a special case of the problem. The effects of functional gradient parameter, radii ratio, wave number, order of Bessel's function appearing in the dispersion relations and mechanical/electrical imperfection parameters associated with the imperfect bonding of a piezoelectric material cylinder and FGPM layer on the phase velocity of shear acoustic waves have been reported through numerical simulation and graphical demonstration. For the sake of numerical computation, the data of PZT-5H for the FGPM cylindrical layer and AlN for a piezoelectric material cylinder have been considered.
机译:考虑了一种理论方法来研究剪切声波在压电圆柱层状结构中的传播行为,该压电圆柱层状结构由不完全结合到有限宽度的同心功能梯度压电材料(FGPM)圆柱层的压电材料圆柱组成。 FGPM圆柱层中的功能梯度被认为沿径向方向连续变化(径向坐标的函数),并且考虑到圆柱结构界面的不完美之处,由于某些机械和/或电学原因,该不完美之处实际上可能存在损伤。通过数学变换,将主导的机电耦合场微分方程简化为贝塞尔方程。通过分析处理来确定在电短路和电断开条件下传播的剪切声波的色散关系,通过将获得的结果简化为预先建立的标准结果和特殊情况下的经典Love波方程来进一步验证问题。功能梯度参数,半径比,波数,贝塞尔函数阶数出现在色散关系中以及与压电材料圆柱体和FGPM层的不完美结合相关的机械/电不完美参数对剪切声波的相速度有影响通过数值模拟和图形演示进行报告。为了进行数值计算,已经考虑了用于FGPM圆柱层的PZT-5H和用于压电材料圆柱体的AlN的数据。

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