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A centrifugo-magnetically actuated gas micropump

机译:离心风磁致动的微型泵

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摘要

This paper describes a novel gas micropump on a centrifugal microfluidic platform. The pump is integrated on a passive and microstructured polymer disk which is sealed with an elastomer lid featuring paramagnetic inlays. The rotational motion of this hybrid disk over a stationary magnet induces a designated sequence of volume displacements of the elastic lid, leading to a net transport of gas. The pumping pressure scales linearly with the frequency, with a maximum observable pressure of 4.1 kPa. The first application of this rotary device is the production of gas-liquid flows by pumping ambient air into a continuous centrifugal flow of liquid. The injected gas volume segments the liquid stream into a series of liquid compartments. Apart from such multi-phase flows, the new pumping technique supplements a generic air-to-liquid sampling method to centrifugal microfluidic platforms.
机译:本文介绍了一种在离心微流控平台上的新型气体微泵。该泵集成在被动和微结构化的聚合物盘上,该盘用具有顺磁性嵌体的弹性体盖密封。该混合盘在固定磁体上的旋转运动引起弹性盖的体积位移的指定序列,从而导致气体的净传输。抽气压力与频率成线性比例,最大可观察压力为4.1 kPa。该旋转装置的第一个应用是通过将环境空气泵入液体的连续离心流中来产生气液流。注入的气体量将液体流分成一系列液体室。除了这种多相流动之外,新的泵送技术还为离心微流控平台补充了通用的气液采样方法。

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