Research on a micropump structure with piezoelectric actuator

Weidong Wang, J. Jia, Zhiwu Li
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引用次数: 1

Abstract

Based on the working principle of piezoelectricity, an electromechanical-coupled mechanics model is established for the circle-flake microactuator. By using the elastic thin plate bending theory with small deflection, some differential equations for elastic curved surface in circular piezoelectric composite laminates are derived and a kind of analysis and design method is presented that piezoelectric patch's radial strain induced by inverse piezoelectric effect is equivalently substituted with transverse stress on piezoelectric composite laminates. It is pointed out that the equivalent transverse load depends on the edge electric field distribution of parallel plate capacitor. The expression of the neutral plane in the piezoelectric composite laminates is derived. Based on the obtained numerical solution of transcendental equation for electric field, a finite element structural model for microactuator is developed. Finally a static analysis on the model of micropump is simulated and satisfactory results are obtained.
压电微泵结构的研究
基于压电工作原理,建立了圆片微作动器的机电耦合力学模型。利用弹性薄板小挠度弯曲理论,推导了圆形压电复合材料层合板弹性曲面的微分方程,提出了一种将压电片的反压电效应引起的径向应变等效替换为压电复合材料层合板上的横向应力的分析设计方法。指出等效横向载荷取决于平行板电容器的边缘电场分布。推导了压电复合材料层合板中性面表达式。在得到电场超越方程数值解的基础上,建立了微执行器的有限元结构模型。最后对微泵模型进行了静力分析仿真,得到了满意的结果。
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