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首页> 外文期刊>Sensors and Actuators, A. Physical >An electromechanical model of an electro-responsive liquid droplet actuator for microsystems: Modeling and verification
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An electromechanical model of an electro-responsive liquid droplet actuator for microsystems: Modeling and verification

机译:微系统电响应液滴执行器的机电模型:建模与验证

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摘要

Dielectric liquids are used to actuate microfluidic devices. Droplet movement is achieved by applying a voltage across the electrodes beneath the dielectric substrate material. To understand the dynamics of these systems, an electromechanical model of a dielectric liquid movement between two parallel plate electrodes is presented herein. The system was modeled using lumped parameter approach using an equivalent capacitance circuit. This model was used to calculate the net electrostatic force acting on the liquid droplet and to predict the response of the liquid under the step input voltage. This model could be generalized to estimate the response of the any dielectric liquids in microfluidic devices of known geometry. Further, it could be used to design any model-based controller to accurately control actuating liquid for displacement or force control applications. The experiments were conducted with the water droplet as a dielectric liquid to validate the theoretical model and to analyze its dynamic characteristics under applied DC voltage. We experimentally investigated the effect of applied voltage, gap between the parallel electrodes, relative permittivity of dielectric fluid, and thickness of substrate material on the response of the water droplet. (C) 2018 Elsevier B.V. All rights reserved.
机译:介电液体用于致动微流体装置。通过在电介质基板材料下方的电极上施加电压来实现液滴运动。为了理解这些系统的动态,本文介绍了两个平行板电极之间的电介质液体运动的机电模型。使用等效电容电路使用总数参数方法进行建模。该模型用于计算作用在液滴上的净静电力,并在步进输入电压下预测液体的响应。该模型可以是推广的,以估计已知几何形状的微流体装置中的任何介电液体的响应。此外,它可用于设计任何基于模型的控制器,以精确控制用于位移或力控制应用的致动液体。用水滴作为介电液体进行实验,以验证理论模型,并分析其在施加的直流电压下的动态特性。我们通过实验研究了施加电压,平行电极之间的间隙,介电流体的相对介电常数,以及基板材料的厚度在水滴的响应之间的效果。 (c)2018年elestvier b.v.保留所有权利。

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