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Design and Simulation of an Electrostatically-Driven MEMS Micro-Mixer

机译:静电驱动mEms微混合器的设计与仿真

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摘要

Bio MEMS ( Biology Micro-electro-mechanical Systems) focus on some micro-fabricated devices including electrical and mechanical parts to study the biological system such as new polymer-based drug delivery systems for anti-cancer agents, specialized tools for minimally invasive surgery, novel cell sorting systems for high-throughput data collection, and precision measurement techniques enabled by micro-fabricated devices. Especially some micro-liquid handling devices like micro-pumps, active and passive micro-mixers that can make two or more micro-fluids mixing completely, with the chaotic advection. This kind of rapid mixing is very important in the biochemistry analysis, drug delivery and sequencing or synthesis of nucleic acids. Besides, some biological processes like cell activation, enzyme reactions and protein folding also require mixing of reactants for initiation, electrophoresis activation. Turbulence and inter-diffusion of them play crucial role in the process of mixing of different fluids. In this report, it will introduce a new kind of electromechanical active micro-mixer, which includes two inlets and one outlet under the electrostatic driven voltage. Two different fluids will enter the micro-mixer and shows different colors separately blue and red. Choosing the ANSYS for the simulation of the fluids running in the micro-mixers, we can see nearly 100% fluids that have been mixed. ANSYS is used to show the effectiveness of the micro-mixer.
机译:生物MEMS(生物微机电系统)专注于一些微细加工的设备,包括用于研究生物系统的电气和机械零件,例如用于抗癌药的新型基于聚合物的药物输送系统,用于微创手术的专用工具,用于高通量数据收集的新型细胞分选系统,以及由微型设备实现的精密测量技术。尤其是一些微液体处理设备,例如微型泵,主动和被动微型混合器,它们可以使两个或多个微型流体完全混合,并产生混乱的对流。这种快速混合在生物化学分析,药物递送以及核酸测序或合成中非常重要。此外,一些生物过程,例如细胞活化,酶反应和蛋白质折叠,也需要混合反应物以进行引发,电泳活化。它们的湍流和相互扩散在不同流体的混合过程中起着至关重要的作用。在本报告中,它将介绍一种新型的电动有源微型混合器,该混合器在静电驱动电压下包括两个入口和一个出口。两种不同的流体将进入微型混合器,分别显示不同的颜色蓝色和红色。选择ANSYS来模拟微型混合器中运行的流体,我们可以看到几乎100%的流体已经混合。 ANSYS用于显示微型混合器的有效性。

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