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Graphene-based composite for dielectric elastomer actuator: A comprehensive review

机译:基于石墨烯的电介质弹性体执行器复合材料:全面审查

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摘要

Dielectric elastomer actuator composites (DEACs) are a class of electroactive polymers that are capable of changing shape or size once applied with an electric field. Such materials have found applications in artificial muscles, micro-robotics and micro air vehicles at industries. The dielectric behavior, mechanical properties, and electric breakdown strength are the main parameters for adjusting actuation behavior of DEACs. This review provides a brief introduction to the effect of 2-dimensional carbonic filler on the percolation threshold during the fabrication of these composites. The design process of graphene nanosheets (GNs) and their derivatives are described based on the filler structure: simple filler and complex filler. For each group, recent remarkable developments are illustrated and the technical issues demanding further improvement are discussed. In general, graphene-oxide (GO) and reduced-GO (rGO), as commutable GNs, numerous cases of use in DEACs have been reported where these materials were employed for controlling the reduction rate of dielectric breakdown strength, maintaining loss parameter (dielectric loss (epsilon '') and loss modulus (E '')), increasing electromechanical sensitively (beta=dielectric permittivity (epsilon') / elastic modulus) and improving the state of filler dispersion with interfacial engineering. The current review discusses the latest trends in research development in achieving such graphene-enabled enhancements. A systematic approach has been undertaken to highlight the advancements and challenges of graphene-based DEACs and the key research areas that need immediate attention. (C) 2019 Elsevier B.V. All rights reserved.
机译:介电弹性体致动器复合材料(DEAC)是一类电活性聚合物,其能够改变一旦用电场施加的形状或尺寸。这些材料在工业中发现了人工肌肉,微机器人和微空气车辆的应用。介电行为,机械性能和电击强度是调整DEACs致动行为的主要参数。本综述简要介绍了二维碳填料在制造这些复合材料期间对渗透阈值的影响。基于填充结构描述石墨烯纳米片(GNS)及其衍生物的设计方法:简单的填料和复合填料。对于每组,讨论了最近的显着发展,并讨论了要求进一步改善的技术问题。通常,据报道,石墨烯 - 氧化物(GO)和降低(RGO),以通勤GNS,在DEAC中使用的许多使用情况,用于控制介电击穿强度的减少率,维持损耗参数(电介质)损失(epsilon')和损耗模量(e'')),增加机电敏感(β=介电介电常数(ε)/弹性模量),提高填充分散状态与界面工程。目前的审查讨论了实现了实现这类简历增强功能的研究开发的最新趋势。已经开展了一种系统的方法,以突出基于石墨烯的立方和需要立即关注的关键研究领域的进步和挑战。 (c)2019 Elsevier B.v.保留所有权利。

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