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Experimental Analysis of Biasing Elements for Dielectric Electro-Active Polymers

机译:介电电活性聚合物偏置元件的实验分析

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This paper presents an experimental investigation of three different, small profile and scalable DEAP actuators. These actuators are designed for use in small scale pumping and valve applications. The actuators used in this paper consist of a biasing element (either a mass, linear spring, or a non-linear spring) coupled with a circular dielectric electro-active polymer (DEAP). These mechanisms bias the DEAP allowing out-of-plane actuation when the voltage is cycled. A constant force input, a linear spring, and a non-linear spring are separately tested as the biasing element of a circular/diaphragm DEAP. Tests are systematically performed at various DEAP pre-deflections, biasing stiffness and electrical loading rates. The displacement stroke performance of each test is examined and analyzed. It was found that the non-linear spring provided the largest displacement stroke over two other biasing elements. It also showed better performance at higher electrical loading rates. Thus, of the three types of biasing tested the non-linear spring shows most promise for use in fluid pump/valve applications. Future work will include optimizing this biasing element for the current DEAP design.
机译:本文介绍了对三种不同的小尺寸可扩展DEAP执行器的实验研究。这些执行器设计用于小型泵送和阀门应用。本文中使用的执行器由与圆形电介质电活性聚合物(DEAP)耦合的偏置元件(质量块,线性弹簧或非线性弹簧)组成。这些机制会对DEAP施加偏置,从而在电压循环时允许平面外驱动。分别测试了恒定力输入,线性弹簧和非线性弹簧作为圆形/隔膜DEAP的偏置元件。系统在各种DEAP预挠度,偏向刚度和电负载率下系统地执行测试。检查和分析每个测试的位移冲程性能。发现非线性弹簧提供了比其他两个偏置元件更大的位移冲程。在更高的电气负载率下,它也表现出更好的性能。因此,在三种类型的偏压测试中,非线性弹簧在流体泵/阀门应用中显示出最大的希望。未来的工作将包括针对当前的DEAP设计优化此偏见元素。

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