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Experimental Study of Flexible Electrohydrodynamic Conduction Pumping for Electronics Cooling

机译:柔性电流动力传导泵浦电子冷却的实验研究

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摘要

As modern-day electronics develop, electronic devices become smaller, more powerful, and are expected to operate in more diverse configurations. However, the thermal control systems that help these devices maintain stable operation must advance as well to meet the demands. One such demand is the advent of flexible electronics for wearable technology, medical applications, and biology-inspired mechanisms. This paper presents the design and performance characteristics of flexible electrohydrodynamic (EHD) pumps, based on EHD conduction pumping technology in macro- and mesoscales. Unlike mechanical pumps, EHD conduction pumps have no moving parts, can be easily adjusted to the microscale, and have been shown to generate and control the flow of refrigerants for electronics cooling applications. However, these pumping devices have only been previously tested in rigid configurations unsuitable for use with flexible electronics. In this work, for the first time, the net flow generated by flexible EHD conduction pumps is measured on aflat plane in various configurations. In this study, the results show that the flexible EHD conduction pumps are capable of generating significant flow velocities in all size scales considered in this study, with and without bending. This study also proves the viability of screen printing as a manufacturing method for these pumps. The selection of working fluid for EHD conduction pumping is also a topic of discussion. Novec Engineered Fluids have been a popular choice for EHD pumping; however, long-term testing has shown that some Novec fluids degrade over time.
机译:随着现代电子的开发,电子设备变得更小,更强大,预计将以更多样化的配置运行。但是,帮助这些设备保持稳定运行的热控制系统必须提前满足需求。一种需求是可穿戴技术,医疗应用和生物学启发机制的柔性电子产品的出现。本文基于宏观和媒介阶段的EHD传导泵技术,介绍了柔性电流动力学(EHD)泵的设计和性能特征。与机械泵不同,EHD导通泵没有移动部件,可以容易地调节到微观尺寸,并且已被证明可以产生和控制电子冷却应用的制冷剂的流动。然而,这些泵送装置仅在刚性配置中测试了不适合使用柔性电子器件的刚性配置。在这项工作中,首次采用柔性EHD导通泵产生的净流量以各种配置在AFLAT平面上测量。在该研究中,结果表明,柔性EHD导通泵能够在本研究中考虑的所有大小尺度中产生显着的流速,有和不弯曲。本研究还证明了丝网印刷作为这些泵的制造方法的可行性。用于EHD传导泵送的工作流体也是讨论的主题。 Novec工程流体是EHD泵送的流行选择;然而,长期测试表明,一些Novec流体随着时间的推移而降低。

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  • 来源
    《Journal of Electronic Packaging》 |2020年第4期|041105.1-041105.6|共6页
  • 作者单位

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

    Multiscale Heat Transfer Laboratory Worcester Polytechnic Institute 100 Institute Rd. Worcester MA 01609;

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  • 正文语种 eng
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