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Optimization Techniques for Improving the Performance of Silicone-Based Dielectric Elastomers

机译:提高有机硅介电弹性体性能的优化技术

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摘要

Dielectric elastomers are possible candidates for realizing products that are in high demand by society, such as soft robotics and prosthetics, tactile displays, and smart wearables. Diverse and advanced products based on dielectric elastomers are available; however, no elastomer has proven ideal for all types of products. Silicone elastomers, though, are the most promising type of elastomer when viewed from a reliability perspective, since in normal conditions they do not undergo any chemical degradation or mechanical ageing/relaxation. Within this review, different pathways for improving the electro-mechanical performance of dielectric elastomers are highlighted. Various optimization methods for improved energy transduction are investigated and discussed, with special emphasis placed on the promise each method holds. The compositing and blending of elastomers are shown to be simple, versatile methods that can solve a number of optimization issues. More complicated methods, involving chemical modification of the silicone backbone as well as controlling the network structure for improved mechanical properties, are shown to solve yet more issues. From the analysis, it is obvious that there is not a single optimization technique that will lead to the universal optimization of dielectric elastomer films, though each method may lead to elastomers with certain features, and thus certain potentials.
机译:介电弹性体可能是实现社会急需的产品的候选者,例如软机器人和假肢,触觉显示器和智能可穿戴设备。有多种基于介电弹性体的先进产品可供选择;然而,没有一种弹性体被证明是适合所有类型产品的理想选择。但是,从可靠性的角度来看,有机硅弹性体是最有前途的弹性体,因为在正常条件下,它们不会发生任何化学降解或机械老化/松弛。在这篇综述中,重点介绍了改善介电弹性体机电性能的不同途径。研究和讨论了各种改进能量转换的优化方法,并特别强调每种方法所具有的前景。弹性体的复合和共混显示为简单,通用的方法,可以解决许多优化问题。显示出更复杂的方法可以解决更多的问题,这些方法包括对有机硅主链进行化学修饰以及控制网络结构以改善机械性能。从分析中可以明显看出,没有一种优化技术可以导致介电弹性体薄膜的普遍优化,尽管每种方法都可能导致弹性体具有某些特征,从而具有某些潜力。

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