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Investigation of microflow reversal by ac electrokinetics in orthogonal electrodes for micropump design

机译:用于微型泵设计的正交电极中交流电动力学逆流研究

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摘要

Orthogonal electrodes have been reported to produce high velocity microflows when excited by ac signals, showing potential for micropumping applications. This paper investigates the microflow reversal phenomena in such orthogonal electrode micropumps. Three types of microflow fields were observed by changing the applied electric signals. Three ac electrokinetic processes, capacitive electrode polarization, Faradaic polarization, and the ac electrothermal effect, are proposed to explain the different flow patterns, respectively. The hypotheses were corroborated by impedance analysis, numerical simulations, and velocity measurements. The investigation of microflow reversal can improve the understanding of ac electrokinetics and hence effectively manipulate fluids.
机译:据报道,正交电极在被交流信号激发时会产生高速微流,这显示出用于微泵应用的潜力。本文研究了这种正交电极微泵中的微流逆转现象。通过改变施加的电信号观察到三种类型的微流场。提出了三种交流电动力学过程,分别是电容电极极化,法拉第极化和交流电热效应,以解释不同的流动模式。假设通过阻抗分析,数值模拟和速度测量得到了证实。对微流逆向的研究可以增进对交流电动学的理解,从而有效地控制流体。

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