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Full Polymer Dielectric Elastomeric Actuators (DEA) Functionalised with Carbon Nanotubes and High-K Ceramics

机译:具有碳纳米管和高K陶瓷功能的全聚合物介电弹性体致动器(DEA)

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摘要

Dielectric elastomer actuators (DEA) are special devices which have a simple working and construction principle and outstanding actuation properties. The DEAs consist of a combination of different materials for the dielectric and electrode layers. The combination of these layers causes incompatibilities in their interconnections. Dramatic differences in the mechanical properties and bad adhesion of the layers are the principal causes for the reduction of the actuation displacement and strong reduction of lifetime. Common DEAs achieve actuation displacements of 2% and a durability of some million cycles. The following investigations represent a new approach to solving the problems of common systems. The investigated DEA consists of only one basic raw polymer, which was modified according to the required demands of each layer. The basic raw polymer was modified with single-walled carbon nanotubes or high-k ceramics, for example, lead magnesium niobate-lead titanate. The development of the full polymer DEA comprised the development of materials and technologies to realise a reproducible layer composition. It was proven that the full polymer actuator worked according to the theoretical rules. The investigated system achieved actuation displacements above 20% regarding thickness, outstanding interconnections at each layer without any failures, and durability above 3 million cycles without any indication of an impending malfunction.
机译:介电弹性体执行器(DEA)是一种特殊设备,具有简单的工作和构造原理以及出色的执行性能。 DEA由用于介电层和电极层的不同材料组成。这些层的组合会导致其互连互不兼容。机械性能的显着差异和各层的不良粘合力是致动位移减少和寿命大幅减少的主要原因。普通的DEA可以实现2%的驱动位移和几百万次循环的耐用性。以下调查代表了一种解决常见系统问题的新方法。所研究的DEA仅包含一种基础原料聚合物,该基础原料可根据每一层的要求进行改性。用单壁碳纳米管或高k陶瓷(例如铌酸铅镁-钛酸铅)对基础原料聚合物进行了改性。全聚合物DEA的开发包括材料和技术的开发,以实现可复制的层组成。事实证明,全聚合物致动器可以按照理论规则工作。所研究的系统在厚度方面实现了超过20%的驱动位移,在每一层上均具有出色的互连性而没有任何故障,并且在300万次循环以上的耐久性也没有任何即将发生的故障迹象。

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