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Dielectric elastomers, with very high dielectric permittivity, based on silicone and ionic interpenetrating networks

机译:介电弹性体,具有非常高的介电常数,基于硅树脂和离子互穿网络

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摘要

Dielectric elastomers (DEs), which represent an emerging actuator and generator technology, admittedly have many favourable properties, but their high driving voltages are one of the main obstacles to commercialisation. One way to reduce driving voltage is by increasing the ratio between dielectric permittivity and the Young's modulus of the elastomer. One system that potentially achieves this involves interpenetrating polymer networks (IPNs), based on commercial silicone elastomers and ionic networks from amino- and carboxylic acid-functional silicones. The applicability of these materials as DEs is demonstrated herein, and a number of many and important parameters, such as dielectric permittivity/loss, viscoelastic properties and dielectric breakdown strength, are investigated. Ionic and silicone elastomer IPNs are promising prospects for dielectric elastomer actuators, since very high permittivities are obtained while dielectric breakdown strength and Young's modulus are not compromised. These good overall properties stem from the softening effect and very high permittivity of ionic networks – as high as ε′ = 7500 at 0.1 Hz – while the silicone elastomer part of the IPN provides mechanical integrity as well as relatively high breakdown strength. All IPNs have higher dielectric losses than pure silicone elastomers, but when accounting for this factor, IPNs still exhibit satisfactory performance improvements.
机译:代表一种新兴的执行器和发电机技术的介电弹性体(DEs)具有许多优越的性能,但是其高驱动电压是商业化的主要障碍之一。降低驱动电压的一种方法是增加介电常数和弹性体的杨氏模量之间的比率。一种可能实现这一目标的系统涉及互穿聚合物网络(IPN),该网络基于商业化的有机硅弹性体以及来自氨基和羧酸官能有机硅的离子网络。本文证明了这些材料作为DE的适用性,并研究了许多许多重要参数,例如介电常数/损耗,粘弹性和介电击穿强度。离子和有机硅弹性体IPN具有良好的介电常数,而介电击穿强度和杨氏模量不受损害,因此有望成为介电弹性体促动器的发展前景。这些良好的整体性能源于离子网络的软化效果和极高的介电常数-在0.1 Hz时高达ε'= 7500-IPN的有机硅弹性体部分提供了机械完整性以及相对较高的击穿强度。所有IPN的介电损耗均高于纯有机硅弹性体,但考虑到这一因素,IPN仍表现出令人满意的性能改进。

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