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Understanding Interdependencies between Mechanical Velocity and Electrical Voltage in Electromagnetic Micromixers

机译:了解电磁微囊仪机械速度和电压之间的相互依赖性

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摘要

Micromixers are critical components in the lab-on-a-chip or micro total analysis systems technology found in micro-electro-mechanical systems. In general, the mixing performance of the micromixers is determined by characterising the mixing time of a system, for example the time or number of circulations and vibrations guided by tracers (i.e., fluorescent dyes). Our previous study showed that the mixing performance could be detected solely from the electrical measurement. In this paper, we employ electromagnetic micromixers to investigate the correlation between electrical and mechanical behaviours in the mixer system. This work contemplates the “anti-reciprocity” concept by providing a theoretical insight into the measurement of the mixer system; the work explains the data interdependence between the electrical point impedance (voltage per unit current) and the mechanical velocity. This study puts the electromagnetic micromixer theory on a firm theoretical and empirical basis.
机译:Micromixers是在微机电系统中发现的芯片上的芯片或微量分析系统技术中的关键组成部分。通常,通过表征系统的混合时间来确定微混合器的混合性能,例如由示踪剂(即荧光染料)引导的循环和振动的时间或数量。我们之前的研究表明,可以仅从电测量中仅检测混合性能。在本文中,我们采用电磁微胶剂来研究混合器系统中电气和机械行为之间的相关性。这项工作通过提供理论上深入了解混合器系统的理论洞察,这项工作考虑了“反转互惠”概念;该工作解释了电点阻抗(每单位电流电流)与机械速度之间的数据相互依赖。本研究将电磁体微混合器理论置于坚定的理论和实证基础。

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