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On the electromechanics of a piezoelectric transducer using a bimorph cantilever undergoing asymmetric sensing and actuation

机译:关于使用双压电晶片悬臂梁进行非对称传感和驱动的压电换能器的机电

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This paper presents an analytical, numerical and experimental study of an asymmetric piezoelectric actuator/sensor cantilever beam. The structure consists in a three-layered laminate with a piezoceramic acting as actuator, an elastic material layer and a second piezoceramic layer that can operate as a sensor or actuator. The coupled expansion-bending motion of the system is analytically resolved, where the governing electromechanical expansion and bending motion equations are obtained. Explicitly analytic solutions for longitudinal and transverse displacements, and also the mechanical/electrical frequency response of the structure are calculated. A finite element model (FEM) is developed and used to evaluate the accuracy of the analytic model. Experimental results are used to verify the frequency response of the structure, and validate the theoretical and FEM models.
机译:本文介绍了非对称压电致动器/传感器悬臂梁的分析,数值和实验研究。该结构由一个三层的层压板组成,该层压板具有用作致动器的压电陶瓷,弹性材料层和可以用作传感器或致动器的第二压电陶瓷层。通过解析求解系统的耦合伸缩运动,可以得到控制的机电伸缩和弯曲运动方程。计算出纵向和横向位移的显式解析解,以及结构的机械/电气频率响应。开发了有限元模型(FEM),并将其用于评估分析模型的准确性。实验结果用于验证结构的频率响应,并验证理论模型和有限元模型。

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