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Electromechanical modelling for piezoelectric flextensional actuators

机译:压电弯曲执行器的机电建模

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The piezoelectric flextensional actuator investigated in this paper comprises three pre-stressed piezoceramic lead zirconate titanate (PZT) stacks and an external, flexure-hinged, mechanical amplifier configuration. An electromechanical model is used to relate the electrical and mechanical domains, comprising the PZT stacks and the flexure mechanism, with the dynamic characteristics of the latter represented by a multiple degree-of-freedom dynamic model. The Maxwell resistive capacitive model is used to describe the nonlinear relationship between charge and voltage within the PZT stacks. The actuator model parameters and the electromechanical couplings of the PZT stacks, which describe the energy transfer between the electrical and mechanical domains, are experimentally identified without disassembling the embedded piezoceramic stacks. To verify the electromechanical model, displacement and frequency experiments are performed. There was good agreement between modelled and experimental results, with less than 1.5% displacement error. This work outlines a general process by which other pre-stressed piezoelectric flextensional actuators can be characterized, modelled and identified in a non-destructive way.
机译:本文研究的压电挠性致动器包括三个预应力压电陶瓷锆钛酸铅钛酸酯(PZT)堆栈和一个外部的,带有挠性铰链的机械放大器配置。机电模型用于将电气领域和机械领域相关联,包括PZT叠层和挠曲机构,挠曲机构的动态特性由多重自由度动力学模型表示。麦克斯韦电阻电容模型用于描述PZT堆中电荷与电压之间的非线性关系。在不拆卸嵌入式压电陶瓷堆栈的情况下,通过实验确定了PZT堆栈的执行器模型参数和机电耦合,这些参数描述了电域和机械域之间的能量转移。为了验证机电模型,进行了位移和频率实验。建模结果与实验结果吻合良好,位移误差小于1.5%。这项工作概述了一般过程,通过该过程可以以无损方式表征,建模和识别其他预应力压电挠性致动器。

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