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首页> 外文期刊>Journal of intelligent material systems and structures >Modeling And Numerical Analysis Of A Circular Piezoelectric Actuator For Valveless Micropumps
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Modeling And Numerical Analysis Of A Circular Piezoelectric Actuator For Valveless Micropumps

机译:无阀微型泵圆形压电执行器的建模与数值分析

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摘要

This article investigates mechanical behavior of a circular piezoelectric actuator for valveless micropumps. An analytical equation for analyzing the deflection of multi-layer piezoelectric structure is derived based on the electro-elastic theory and the thin plate theory. We assume that the distribution of electric potential along the thickness direction is governed by the square law to satisfy the Maxwell static electricity equation. The validity of the proposed analytical model is further studied by using the ANSYS software. Furthermore, the effects of the dimensions and material properties of a multi-layer piezoelectric structure on its deflection are analyzed for optimal design of the actuator. The simulation results show that the thickness ratio of the piezoelectric layer and the passive plate in the multi-layer structure can be optimized to obtain the largest deflection. The important design parameters of the piezoelectric actuator, such as the passive plate properties and material, and the piezoelectric layer dimension and material, and the bonding layer dimension and its excitation voltage, should be selected to improve the performance of the valveless micropump.
机译:本文研究了用于无阀微型泵的圆形压电致动器的机械性能。基于电弹性理论和薄板理论,推导了分析多层压电结构挠度的解析方程。我们假设沿厚度方向的电势分布受平方律控制,以满足麦克斯韦静电方程式。使用ANSYS软件进一步研究了所提出的分析模型的有效性。此外,分析了多层压电结构的尺寸和材料特性对其挠曲的影响,以优化执行器的设计。仿真结果表明,可以优化多层结构中压电层和无源板的厚度比,以获得最大的挠度。应当选择压电致动器的重要设计参数,例如无源板的性能和材料,压电层的尺寸和材料,粘结层的尺寸及其激励电压,以改善无阀微型泵的性能。

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