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Physical Principles of Ionic Polymer-Metal Composites as Electroactive Actuators and Sensors

机译:离子聚合物-金属复合材料作为电活性致动器和传感器的物理原理

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This article introduces and considers the fundamental understanding of ionic polymer-metal composites (IPMCs) functioning as electroactive actuators and sensors. IPMCs consist of ion-exchange polymers acting as base materials and metal layers functioning as electrodes. The actuation and sensing abilities of IPMCs are dependent upon the components of ion-exchange polymers (ionic groups and cations) and electrode materials. In order to improve the bending and sensing performance of the IPMCs, an integral, two-step electroplating technique and a requisite dispersion agent are used during fabrication. Electroding materials also play a key role in determining the properties of IPMCs, and numerous methods in electroding have been tried, making use of various metals, carbon nanotubes, and composites. So far, IPMCs have been adapted as robotic actuators, artificial muscles, and electrical sensors. In the future, it is expected that IPMCs will broadly spread their roles from small-sized biomedical devices to large-scale actuators for aerospace as well as many industrial applications.
机译:本文介绍并考虑了对起电活性致动器和传感器作用的离子聚合物-金属复合材料(IPMC)的基本理解。 IPMC由充当基础材料的离子交换聚合物和充当电极的金属层组成。 IPMC的驱动和感应能力取决于离子交换聚合物(离子基团和阳离子)和电极材料的成分。为了改善IPMC的弯曲和传感性能,在制造过程中使用了集成的两步电镀技术和必要的分散剂。电镀材料在确定IPMC的特性方面也起着关键作用,并且已经尝试了多种电镀方法,利用了各种金属,碳纳米管和复合材料。到目前为止,IPMC已被用作机器人执行器,人造肌肉和电传感器。将来,预计IPMC将从小型生物医学设备广泛地应用于航空航天以及许多工业应用的大型执行器中。

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