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Effect of micropillar electrode spacing on the performance of electrohydrodynamic micropumps

机译:微柱电极间距对电动流体微泵性能的影响

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摘要

Electrohydrodynamic (EHD) micropumps with three-dimensional 50 μm × 50 μm micropillar electrodes were fabricated and tested in this study. Two basic electrode configurations were investigated: (i) micropillar emitter and collector electrodes (symmetric) and (ii) micropillar emitter and planar collector electrodes (asymmetric). The micropumps were fabricated by integrating chromium/gold planar electrodes with electroplated 3-D Nickel micropillars on a glass substrate with a 100 μm high PDMS microchannel. The effect of the spanwise micropillar spacing on the pump performance was determined. The pumps were tested using HFE-7100 as the working fluid for the maximum pressure generation under a no flow condition. The micropumps with the asymmetric electrode design generated a significantly higher pressure head than the corresponding micropumps with symmetric electrode configuration for the same applied voltage, with lower power consumption. A decrease in the spanwise spacing of the micropillar electrodes increased the pump performance for the symmetric configuration, while the performance decreased for the asymmetric configuration.
机译:在本研究中,制造并测试了具有三维50μm×50μm微型柱状电极的电动流体动力学(EHD)微型泵。研究了两种基本的电极配置:(i)微型柱状发射极和集电极(对称)和(ii)微型柱状发射极和平面集电极(不对称)。通过将铬/金平面电极与电镀的3-D镍微柱集成在具有100μm高PDMS微通道的玻璃基板上来制造微泵。确定了翼展方向微柱间距对泵性能的影响。使用HFE-7100作为工作流体对泵进行了测试,以在无流量条件下产生最大压力。对于相同的施加电压,具有不对称电极设计的微型泵比具有对称电极配置的相应微型泵产生的压头明显更高,且功耗更低。微柱状电极的翼展方向间距的减小增加了对称配置的泵性能,而非对称配置的性能下降。

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