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Analytical Model for an Electrostatically Actuated Miniature Diaphragm Compressor

机译:静电驱动微型隔膜压缩机的分析模型

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摘要

This paper presents a new analytical approach for quasi-static modeling of an electrostatically actuated diaphragm compressor that could be employed in a miniature scale refrigeration system. The compressor consists of a flexible circular diaphragm clamped at its circumference. A conformal chamber encloses the diaphragm completely. The membrane and the chamber surfaces are coated with metallic electrodes. A potential difference applied between the diaphragm and the chamber pulls the diaphragm toward the chamber surface progressively from the outer circumference toward the center. This zipping actuation reduces the volume available to the refrigerant gas, thereby increasing its pressure. A segmentation technique is proposed for analysis of the compressor by which the domain is divided into multiple segments for each of which the forces acting on the diaphragm are estimated. The pull-down voltage to completely zip each individual segment is thus obtained. The required voltage for obtaining a specific pressure rise in the chamber can thus be determined. Predictions from the model compare well with other simulation results from the literature, as well as to experimental measurements of the diaphragm displacement and chamber pressure rise in a custom-built setup.
机译:本文提出了一种用于静电驱动隔膜压缩机的准静态建模的新分析方法,该方法可用于微型制冷系统。压缩机由一个固定在其圆周上的柔性圆形隔膜组成。保形室将隔膜完全封闭。膜和腔室表面覆盖有金属电极。在隔膜和腔室之间施加的电势差将隔膜从外周向中心逐渐拉向腔室表面。这种拉链致动减小了制冷剂气体可用的体积,从而增加了其压力。提出了一种用于压缩机的分析的分段技术,通过该技术将域划分为多个段,针对每个段估计作用在隔膜上的力。这样就获得了完全拉紧每个单独段的下拉电压。因此可以确定在腔室中获得特定压力升高所需的电压。该模型的预测与文献中的其他模拟结果以及定制安装中的膜片位移和腔室压力上升的实验测量结果相比具有很好的对比性。

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