• CN:11-2187/TH
  • ISSN:0577-6686

›› 2008, Vol. 44 ›› Issue (11): 121-125.

• 论文 • 上一篇    下一篇

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无阀压电微流体泵工作特性与结构参数

鲁立君;吴健康   

  1. 华中科技大学土木工程与力学学院
  • 发布日期:2008-11-15

Working Behavior and Structure Parameter of Valveless Piezoelectric Micropumps

LU Lijun;WU Jiankang   

  1. School of Civil Engineering & Mechanics, Huazhong University of Science and Technology Wuhan National Laboratory for Optoelectronics
  • Published:2008-11-15

摘要: 根据平面无阀压电微流体泵的结构特点,采用厚度平均的浅水模型和有限元法,得到微流体泵液体-振动片耦合方程。耦合方程的模态分析给出硅片一阶模态自然频率和振型,以及硅片振幅-频率关系。在模态分析之后,加入压电力考察振动片响应、微泵流动特征和微泵流量。同时研究微泵结构参数(微泵压电片半径、扩散管长度、最小宽度、扩散张角)对微流体泵液—固耦合系统的自然频率、振动片振幅和微泵流量的影响,得出对微流体泵优化设计有重要意义的结果。

关键词: 浅水方程模型, 压电微流体泵, 液体—振动片耦合方程

Abstract: Based on the characteristic of planar valveless piezoelectric micropumps thickness-averaged shallow water model and finite element method are employed to develop a liquid-diaphragm coupled equation of the micropump. The mode analysis of coupled equation is carried out for the first-order natural frequency, vibration shape and the amplitude-frequency relation of the silicon diaphram. After mode analysis, piezoelectric force is imposed to investigate diaphragm response, flow behavior and flow rate of micropump. The effects of the structure parameters (the length, the minimum width and the diffuse angle of the micro-diffuser, and the radius of piezoelectric patch) on the natural frequency of liquid-solid coupled system, the diaphragm amplitude and the flow rate of the micropumps are studied. Significant results are obtained for optimal design of the micropumps.

Key words: Liquid-diaphragm coupled equation, Piezoelectric micropumps, Shallow water equation model

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