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Recent Advances In Ionic Polymer Conductor Composite Materials As Distributed Nanosensors, Nanoactuators And Artificial Muscles

机译:离子聚合物导电复合材料作为分布式纳米传感器,纳米致动器和人造肌肉的最新进展

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Recent advances in ionic polymer conductor composites (IPCC) and ionic polymer metal composites (IPMC) as biomimetic distributed nanosensors, nanoactuators, nanotransducers and artificial muscles are briefly discussed in this paper. These advances include brief reproduction of some of these advances that appeared in a new book and a recent set of 4 review articles published in the International Journal of Smart Materials and Structures, advances in manufacturing, force optimization, modeling and simulation and new products developed by Environmental Robots Incorporated, as well as numerous potential applications using Ionic Polymer-Metal Composites (IPMC's) as distributed nanosensors, nanotransducers, nanoactuators and artificial muscles. It is certainly clear that the extent of applications of IPCC's and IPMC's go beyond the scope of this paper or the space allocated to this paper. However, this paper will present the breadth and the depth of all such applications of IPCC's and IPMC's as biomimetic robotic distributed nanosensors, nanoactuators, nanotransducers and artificial/synthetic muscles.
机译:本文简要讨论了作为仿生分布纳米传感器,纳米致动器,纳米换能器和人造肌肉的离子聚合物导体复合材料(IPCC)和离子聚合物金属复合材料(IPMC)的最新进展。这些进步包括对其中一些进步的简要再现,这些进步出现在一本新书中,以及最近发表在《国际智能材料与结构杂志》上的4篇评论文章,制造,力优化,建模和仿真以及由Microsoft开发的新产品的进步。环境机器人公司,以及使用离子聚合物金属复合材料(IPMC)作为分布式纳米传感器,纳米换能器,纳米致动器和人造肌肉的众多潜在应用。显然,IPCC和IPMC的应用范围超出了本文的范围或分配给本文的空间。但是,本文将介绍IPCC和IPMC在仿生机器人分布式纳米传感器,纳米致动器,纳米换能器和人工/合成肌肉等所有此类应用中的广度和深度。

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