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On secular equation of SH waves propagating in pre-stressed and rotating piezo-composite structure with imperfect interface

机译:界面不完善的预应力旋转压电复合结构中SH波的长时程方程

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摘要

An analytical approach is adopted to investigate the SH waves in a composite structure consisting of initially stressed rotating piezoelectric layer and initially stressed substrate with rotation. The interface between the layer and the substrate is assumed to be imperfect. Two distinct types of imperfect interfaces (dielectrically weakly and highly conducting) are considered. Secular equations have been obtained for both electrically open and short cases with weakly and highly performing interface. Particular cases have been derived and matched with existing result. The characteristics of SH wave through the considered framework and their state of relying on different physical and geometrical parameters have been scrutinized based on their numerical results. The parallel simulated outcomes of disparate physical quantities, namely, phase velocity, group velocity, dispersive curves, initial stress, rotation and electromechanical coupling factor, and stress distribution of SH wave in the considered structure are investigated. The considered model may be useful in theoretical foundation and practical application for the development of piezoelectric sensors, structural health monitoring, and surface acoustic wave devices.
机译:采用一种分析方法来研究复合结构中的SH波,该复合结构由初始应力旋转的压电层和初始应力旋转衬底组成。假设该层和基材之间的界面不完美。考虑了两种不同类型的不完美界面(介电性弱和高导电性)。对于具有弱和高性能界面的电气开放和短路情况,已经获得了长期方程。已得出特定案例并与现有结果相匹配。根据其数值结果,仔细研究了SH波通过所考虑的框架的特征及其依赖于不同物理和几何参数的状态。研究了不同物理量的并行模拟结果,即相速度,群速度,色散曲线,初始应力,旋转和机电耦合因子以及所考虑结构中SH波的应力分布。考虑的模型对于压电传感器,结构健康监测和表面声波设备的开发可能具有理论基础和实际应用。

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