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Electromechanical Behavior of Fibers Coated with an Electrically Conductive Polymer

机译:涂有导电聚合物的纤维的机电行为

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Fibers/fabrics coated with conductive polymers exhibit sensing capacities for external stimuli like strain, temperature, relative humidity, etc. In this paper, we present our recent investigation of the sensing behavior and mechanical analysis of polymer fibers coated with an intrinsically conductive polymer, i.e., polypyrrole (PPy). PPy-coated PA6 fibers and PPy-coated Lycra fibers are prepared by chemical vapor deposition using pyrrole in the presence of an oxidizing agent, and their electromechanical behavior under tensile load is studied experimentally. The mechanism governing the electromechanical behavior of these conductive fibers is investigated, and the effects of various factors that are responsible for variations in the electrical resistance are discussed. An electromechanical model is proposed that correlates the resistance change with the applied strain, the damage level of the conductive fibers, the environmental temperature, and the relative humidity. The model provides a theoretical basis for the analysis and design of electrically conductive fabrics.
机译:涂有导电聚合物的纤维/织物对外部刺激(例如应变,温度,相对湿度等)表现出传感能力。在本文中,我们介绍了对涂有本征导电聚合物的聚合物纤维(即,即纤维)的传感行为和力学分析的最新研究。 ,聚吡咯(PPy)。 PPy包覆的PA6纤维和PPy包覆的Lycra纤维是在氧化剂存在下,通过吡咯通过化学气相沉积法制备的,并对其在拉伸载荷下的机电性能进行了实验研究。研究了控制这些导电纤维机电行为的机理,并讨论了引起电阻变化的各种因素的影响。提出了一种机电模型,该模型将电阻变化与施加的应变,导电纤维的损坏程度,环境温度和相对湿度相关联。该模型为导电织物的分析和设计提供了理论依据。

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