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Droplet Necking and Morphology Variations Induced by Changing the Gap Height During Transport in Digital Microfluidic Systems

机译:在数字微流体系统中运输过程中,通过改变间隙高度引起的液滴颈缩和形态变化

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摘要

In this paper, we show that the droplet morphology varies significantly during the transport process in digital microfluidic (DMF) systems depending on the gap height between the top and bottom plates. The experimental results elucidate the effect of changing the gap height on the initiation and progression of droplet motion. For example, extreme necking is observed during transport from one electrode to another at low gap heights. In essence, this necking is unlike the previously reported necking occurring during the splitting process over three electrodes. Pronounced elongation of droplets at certain stages during the droplet motion was examined. The effect of changing the gap height on the droplet velocity profile is illustrated. We found that prolonged actuation time is needed to transport the droplet successfully at low gap heights. This paper entails detailed experimental and numerical characterization of droplet morphology to insinuate useful design and prototyping tips for enhanced DMF devices. Such deformation, elongation, and necking corroborate that the existing analytical models may be inadequate for certain gap heights as they typically assume a circular shape for the droplet during motion. [2014-0292]
机译:在本文中,我们表明,在数字微流控(DMF)系统中,液滴形态在运输过程中会显着变化,具体取决于顶板和底板之间的间隙高度。实验结果阐明了改变间隙高度对液滴运动的开始和进行的影响。例如,在以低间隙高度从一个电极传输到另一电极的过程中观察到极端的颈缩。本质上,该颈缩不同于先前报道的在三个电极上的分裂过程中发生的颈缩。在液滴运动期间的某些阶段检查了液滴的明显伸长。说明了改变间隙高度对液滴速度分布的影响。我们发现需要较长的致动时间才能在低间隙高度成功运输液滴。本文对液滴形态进行详细的实验和数值表征,以暗示增强型DMF设备的有用设计和原型制作技巧。这种变形,伸长和缩颈证实了现有的分析模型对于某些间隙高度可能是不足的,因为它们在运动过程中通常为液滴呈圆形。 [2014-0292]

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