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Fluid Flow and Mixing Induced by AC Continuous Electrowetting of Liquid Metal Droplet

机译:交流连续电润湿液态金属液滴引起的流体流动和混合

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摘要

In this work, we proposed a novel design of a microfluidic mixer utilizing the amplified Marangoni chaotic advection induced by alternating current (AC) continuous electrowetting of a metal droplet situated in electrolyte solution, due to the linear and quadratic voltage-dependence of flow velocity at small or large voltages, respectively. Unlike previous researchers exploiting the unidirectional surface stress with direct current (DC) bias at droplet/medium interface for pumping of electrolytes where the resulting flow rate is linearly proportional to the field intensity, dominance of another kind of dipolar flow pattern caused by local Marangoni stress at the drop surface in a sufficiently intense AC electric field is demonstrated by both theoretical analysis and experimental observation, which exhibits a quadratic growth trend as a function of the applied voltage. The dipolar shear stress merely appears at larger voltages and greatly enhances the mixing performance by inducing chaotic advection between the neighboring laminar flow. The mixer design developed herein, on the basis of amplified Marangoni chaotic advection around a liquid metal droplet at larger AC voltages, has great potential for chemical reaction and microelectromechanical systems (MEMS) actuator applications because of generating high-throughput and excellent mixing performance at the same time.
机译:在这项工作中,我们提出了一种微流体混合器的新颖设计,该混合器利用了放大的Marangoni混沌对流,该对流是由交流电(AC)连续电润湿位于电解质溶液中的金属液滴引起的,这归因于流速的线性和二次电压依赖性。小电压或大电压。不同于以前的研究人员在液滴/介质界面上利用直流偏压(DC)施加单向表面应力来泵送电解质,其中流速与场强成线性比例,另一种由局部Marangoni应力引起的偶极流模式占优势理论分析和实验观察均表明,在足够强的交流电场中,液滴表面的电导率呈现出二次增长的趋势,该趋势是所施加电压的函数。偶极剪切应力仅在较大的电压下出现,并且通过在相邻层流之间引起混沌对流而大大增强了混合性能。本文开发的混合器设计基于在较大的AC电压下围绕液态金属小滴的放大的Marangoni混沌对流,具有化学反应和微机电系统(MEMS)致动器应用的巨大潜力,因为在这种情况下会产生高通量和出色的混合性能同时。

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