Design, fabrication, and testing of an electrohydrodynamic ion-drag micropump

J. Darabi, M. Rada, M. Ohadi, J. Lawler
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引用次数: 5

Abstract

This paper presents the design, fabrication, and testing of a novel electrohydrodynamic (EHD) ion-drag micropump. In order to maximize the electrical field gradients that are responsible for EHD pumping, we incorporated three-dimensional (3-D) triangular bumps of solder as part of the EHD electrodes. To form these bumps, Niobium was sputter-deposited onto a ceramic substrate, coated with photoresist, optically exposed and etched using a reactive ion etcher to define the electrode pattern. The substrate was then "dipped" into a molten solder pool. Since the solder adheres only to the metallic film, bumps of solder form on the electrodes, giving the electrodes a significant 3-D character. The overall dimensions of the micropump are 19 mm /spl times/ 32 mm /spl times/ 1.05 mm. Four different designs were fabricated and tested. Static pressure tests were performed with a 3M Thermal Fluid (HFE-7100) as the working fluid and the optimum design was identified. The results with the thermal fluid were highly promising and indicated a pumping head of up to 700 Pa at an applied voltage of 300 V. The experimental results for the four different designs show that the presence of the 3-D bump structures significantly improves the pumping performance. Also, a much better pumping performance was obtained with the micropump in which the emitter had a saw-tooth shape.
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电流体动力离子拖微泵的设计、制造和测试
本文介绍了一种新型电流体动力(EHD)离子拖动微泵的设计、制造和测试。为了最大限度地提高EHD泵送的电场梯度,我们在EHD电极中加入了三维三角形凸起的焊料。为了形成这些凸起,铌被溅射沉积在陶瓷衬底上,涂上光刻胶,光学曝光,并使用活性离子蚀刻器蚀刻以确定电极图案。然后将基板“浸入”熔融焊料池中。由于焊料只附着在金属薄膜上,焊料在电极上形成凸起,使电极具有显著的3-D特征。微泵的外形尺寸为19mm /spl倍/ 32mm /spl倍/ 1.05 mm。制作并测试了四种不同的设计。采用3M热液(HFE-7100)作为工作流体进行了静压试验,确定了最佳设计方案。热流体的结果非常有希望,并表明在施加电压为300 V时泵扬程高达700 Pa。四种不同设计的实验结果表明,三维凹凸结构的存在显著提高了泵送性能。采用锯齿状微泵,泵浦的泵浦性能明显优于锯齿状微泵。
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