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AC electroosmotic micropumping with a square spiral microelectrode array

机译:带有方形螺旋微电极阵列的AC电软渗透微泵

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An electro-kinetic micropumping device has been designed, experimentally tested and analyzed theoretically using coupled computational fluid dynamic and electrostatic simulations. A microelectrode array uses the principle of AC electroosmosis; bulk fluid motion due to ions driven along microelectrode surfaces by forces stemming from tangential electric fields. Three submerged microelectrode wires, deposited to form a square spiral, had a three-phase traveling-wave applied AC signal to create a net flow. Microsphere tracers were used to measure the flow to determine pumping performance, and compare the fluid velocity and operating frequency to theoretical results. The device presented here demonstrated bi-directional pumping capabilities and the potential for use as both a particle collector and microfluidic pump.
机译:理论上,使用耦合的计算流体动态和静电模拟设计和分析了电动力学微型装置。微电极阵列使用AC电渗的原理;由于来自微电极表面驱动的离子由切向电场的势力驱动,因此散装流体运动。沉积以形成方形螺旋的三根浸没的微电极线具有三相行进波应用的AC信号以产生净流动。使用微球示踪剂来测量流动以确定泵送性能,并将流体速度和工作频率与理论结果进行比较。这里呈现的设备显示了双向泵送能力和用作颗粒收集器和微流体泵的可能性。

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