Wound roll dielectric elastomer actuators: fabrication, analysis and experiments

A. Rajamani, M. Grissom, C. Rahn, Y. Ma, Qiming Zhang
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引用次数: 34

Abstract

Wound roll electroactive polymer actuators fabricated with dielectric elastomer (DE) materials provide high bandwidth actuation for robots, minipumps, loudspeakers, valves and prosthetic devices. In this paper, we develop a DE wound roll actuator fabrication process that produces high strain (13%), reliable (3480 cycles at maximum strain), and stiff (157 N/m) actuators. An axisymmetric finite element method (FEM) model with electrostatic and radial bulk modulus nonlinearity predicts actuator displacement and stress. The maximum compressive radial stress occurs at the center of the innermost active layer. This layer also has the thinnest material, indicating the most likely failure point. The nonlinear model predicts actuator displacement in response to applied voltage and load, and matches experiments to within 1 mm.
卷绕式介电弹性体致动器:制造、分析与实验
用介电弹性体(DE)材料制造的卷绕式电活性聚合物致动器为机器人、微型泵、扬声器、阀门和假肢设备提供高带宽致动。在本文中,我们开发了一种DE绕线卷致动器制造工艺,该工艺可生产高应变(13%),可靠(最大应变下3480次循环)和刚性(157 N/m)致动器。采用具有静电和径向体积模量非线性的轴对称有限元法(FEM)模型预测执行器的位移和应力。最大径向压应力发生在最内层活动层的中心。这一层也有最薄的材料,表明最可能的失效点。该非线性模型预测了执行器位移对外加电压和负载的响应,并将实验匹配到1 mm以内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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