Working principle and performance of the dynamic micropump

Torsten Gerlach, H. Wurmus
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引用次数: 239

Abstract

Dynamic micropumps employing pyramid-trunc shaped diffusers as dynamic passive valves have been developed, built and tested. They are particularly characterized by a very simple fabrication technology and good high frequency performance. A prototype being 5*5*lmm/sup 3/ in size reached with methanol a zero load pump rate of more than 300 /spl mu/l/min and a maximum pump pressure of about 7 kPa at 5 kHz working frequency. Dynamic micropumps can, therefore, compete with known solutions of similar or even bigger size. The direction-dependent behaviour of silicon microdiffusers have been experimentally investigated; the results are discussed. Based on the found characteristics, a static model for dynamic membrane pumps has been derived. The calculated parameters match quite well the real values of different tested micropumps. By the static model, pump layout adapted to the demanded application becomes easier.
动态微泵的工作原理及性能
采用锥形扩压器作为动态被动阀的动态微泵已经研制、制造并进行了试验。其特点是制作工艺简单,高频性能好。一个尺寸为5*5*lmm/sup / /的原型,在5 kHz工作频率下,甲醇的零负荷泵率超过300 /spl mu/l/min,最大泵压力约为7 kPa。因此,动态微泵可以与已知的类似甚至更大尺寸的解决方案竞争。实验研究了硅微扩散器的方向依赖行为;对结果进行了讨论。在此基础上,推导了动态膜泵的静态模型。计算的参数与不同微泵的实际值吻合较好。通过静态模型,使泵的布置更容易适应所需的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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