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Combined Experimental and Numerical Simulation Study of PDMS Pneumatic Micropumps

机译:PDMS气动微型泵的组合实验与数值模拟研究

摘要

This paper presents a combined experimental and numerical simulation study of polydimethylsiloxane (PDMS) pneumatic micropumps. The micropumps consist of three pneumatic PDMS membranes, one pump chamber, and two check valves. In particular, two flow stoppers in fluidic channel corresponding to the check valves can avoid back flow, and increase the flow rate. The flow rates of the micropumps have been tested under operational parameters including varied applied pneumatic pressures and pumping frequencies. A maximal flow rate of 449 μL/min is achieved at the driving frequency of 25 Hz and applied pressure of 15 psi. The numerical simulation using COMSOL software verified that the experimental results have a consistent trend for flow rate variation with respect to frequency and the peak flow rate at an optimal frequency.
机译:本文介绍了聚二甲基硅氧烷(PDMS)气动微型泵的组合实验和数值模拟研究。微型泵由三个气动PDMS膜,一个泵室和两个止回阀组成。特别地,在流体通道中与止回阀相对应的两个限流器可以避免回流,并增加流速。微型泵的流量已在运行参数下进行了测试,包括变化的施加气压和泵送频率。在25 Hz的驱动频率和15 psi的施加压力下,最大流量为449μL/ min。使用COMSOL软件进行的数值模拟证明,实验结果在频率和最佳频率下的峰值流量方面,流量变化趋势一致。

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