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A size-dependent micropolar-piezoelectric layered structure for the analysis of love wave

机译:一种尺寸依赖的微柱压电层结构,用于分析爱情波

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摘要

The propagation characteristics of Love wave form an essential basis for designing highly sensitive microacoustic devices for sensing applications. In this paper, the propagation of Love wave in a micropolar-piezoelectric structure is investigated with the objective of enhancing the performance of Love wave-based devices. A study has been carried out by using two sets of a piezoelectric material, i.e. PZT-5H and BaTiO3material. The closed-form expression of the dispersion relations is derived analytically for electrically open and electrically short conditions. The effects of internal microstructures of the micropolar elastic half-space, the thickness of a piezoelectric layer, the piezoelectric constants, and the dielectric constants are illustrated graphically on the phase velocity for both the considered materials of the piezoelectric layer under electrically open and short conditions.
机译:爱波的传播特性形成了设计用于感测应用的高敏感微声装置的基本基础。 在本文中,研究了在基于爱力波的设备的性能的目标中研究了光波 - 压电结构中的爱波的传播。 通过使用两组压电材料,即PZT-5H和BATIO3MARTERIAL进行了研究。 分散关系的闭合形式表达被分析地推导出用于电开和电动短条件。 微柱弹性半空间的内部微观结构的影响,压电层,压电常数和介电常数的厚度在电动开放和短条件下的所考虑的压电层材料的相位速度上示出 。

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