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首页> 外文期刊>Journal of Microelectromechanical Systems >Development of an Electrohydrodynamic Injection Micropump and Its Potential Application in Pumping Fluids in Cryogenic Cooling Systems
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Development of an Electrohydrodynamic Injection Micropump and Its Potential Application in Pumping Fluids in Cryogenic Cooling Systems

机译:电动流体注射微型泵的开发及其在低温冷却系统中泵送流体的潜在应用

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Cryogenic cooling has become a widely adopted technique to improve the performance of electronics and sensors. A potential application of an electrohydrodynamic (EHD) pumping system is its use in pumping fluids in cryogenic cooling systems. In this paper, we present the results of a theoretical/experimental investigation to study the feasibility of using an EHD injection micropump for pumping liquid nitrogen. First, the mechanisms of charge transport and ionization phenomenon in cryogenic liquids are discussed. Next, the design and fabrication of an EHD injection micropump that employs an array of interdigitated saw-tooth/plane electrodes are described. Finally, experimental results and observations are presented. An asymmetric saw-tooth/plane geometry was designed to achieve a strong inhomogeneous electric field. Each emitter electrode had a base width of 10 μm. Each tooth on the emitter electrode had a base length of 10 μm with a tip angle of 60°. The collector electrode consisted of a planar strip with a width of 10 ^tm. The gap between emitter and collector electrodes was 20 μm. The distance between each neighboring stage (a pair of emitter and collector electrodes) was 40 μm. The patterned area was 10 mm by 20 mm allowing approximately 200 stages to be fabricated along the length of the micropump. The maximum pressure head achieved by this micropump in the absence of a net flow was 550 and 205 Pa for 3M's HFE-7100 thermal fluid and liquid nitrogen, respectively. Also, the maximum mass flow rate was 3.9 g/min at the generated pressure of 180 Pa during a closed loop test with HFE-7100.
机译:低温冷却已成为提高电子设备和传感器性能的广泛采用的技术。电动液压(EHD)泵系统的潜在应用是其在低温冷却系统中泵送流体的用途。在本文中,我们提出了理论/实验研究的结果,以研究使用EHD注射微型泵泵送液氮的可行性。首先,讨论了低温液体中电荷传输和电离现象的机理。接下来,将描述采用交叉指状锯齿/平面电极阵列的EHD注射微型泵的设计和制造。最后,给出了实验结果和观察结果。非对称的锯齿/平面几何形状旨在实现强大的不均匀电场。每个发射电极的基极宽度为10μm。发射电极上的每个齿的根长为10μm,尖角为60°。集电极由宽度为10μm的平面条组成。发射极和集电极之间的间隙为20μm。每个相邻平台(一对发射极和集电极)之间的距离为40μm。图案化的区域为10毫米乘20毫米,可沿微型泵的长度制造大约200个平台。对于3M的HFE-7100热流体和液氮,在没有净流量的情况下,该微型泵实现的最大压头分别为550和205 Pa。同样,在使用HFE-7100进行闭环测试期间,在180 Pa的产生压力下,最大质量流量为3.9 g / min。

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