首页> 外文会议>Conference on Electroactive Polymer Actuators and Devices(EAPAD); 20040315-20040318; San Diego,CA; US >Electro-Elastic Modeling of a Dielectric Elastomer Diaphragm for a Prosthetic Blood Pump
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Electro-Elastic Modeling of a Dielectric Elastomer Diaphragm for a Prosthetic Blood Pump

机译:人工血泵介电弹性体膜片的电弹性建模

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摘要

A dielectric elastomer diaphragm is to be designed for potential use in a prosthetic blood pump. Application of an electric field deforms the membrane such that it moves from an initially flat configuration to an inflated state. This motion creates positive displacement of blood from the cardiac chambers thus mimicking the pump-like behavior of the natural heart. A comprehensive large deformation model accounting for the combined dielectric and elastic effect has been formulated. This paper presents recent developments in the model to further incorporate the entire nonlinear range of material elastic behavior and to more accurately represent the applied electric field by keeping the voltage constant as the membrane thickness decreases. The updated model is used to calculate the effects of varying system parameters such as pressure, voltage, prestretch, material constants, and membrane geometry. Analytical results are obtained for biaxially stretched 3M VHB 4905 polyacrylate films.
机译:介电弹性膜片应设计成可在人造血泵中使用。施加电场会使膜变形,从而使膜从最初的平坦状态移动到膨胀状态。这种运动使心脏腔室中的血液产生正向位移,从而模仿了自然心脏的泵样行为。建立了一个综合的大变形模型,考虑了介电和弹性的综合作用。本文介绍了该模型的最新进展,以进一步纳入材料弹性行为的整个非线性范围,并通过在膜厚度减小时保持电压恒定来更准确地表示施加的电场。更新后的模型用于计算变化的系统参数(例如压力,电压,预拉伸,材料常数和膜几何形状)的影响。对双轴拉伸的3M VHB 4905聚丙烯酸酯薄膜获得了分析结果。

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