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Investigation on Nonlinear Electromechanical Behavior of Conductive Polymer Composites-based Flexible Strain Sensor

机译:基于导电聚合物复合材料的柔性应变传感器非线性机电性能研究

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Flexible electronics that have significant potential applications on medical care, human motion detection and human-machine interaction have attracted large amount attentions in the emerging electronics field. Particularly, flexible sensors exhibiting perception capability of natural physical signals while sustaining flexible and stretchable properties play a critical role in flexible electronics. In literature, lots of work focus on nanomaterials develop and structure design to promote the applications of variety of flexible electronics. In this paper, a strain sensor based on conductive polymer composites (CPCs) with carbon nanotubes (CNTs) was prepared. Specifically, different weight percentage of CNTs was mixed in the Polydimethylsiloxane (PDMS) substrate. In addition, silicone fluid was introduced into the CPCs to understand the influence on electromechanical performance. Besides, silicone fluid can adjust the flexibility and electrical conductivity of prepared CPCs-based strain sensors. Furthermore, cyclic electromechanical test was deployed to investigate the reliability and dynamical mechanical properties of presented strain sensors. Interestingly, strong nonlinear behavior between electrical resistance and applied strain was presented for strain sensors with different wt% CNTs and whether silicone fluid or not. To understand the mechanism behind this nonlinear behavior, conductive networks competition and time-dependent material mechanical property were discussed to support the presented experimental results. It was believed that the fundamental understanding on the nonlinear behavior of prepared CPCs based strain sensors could pave a way for the wide applications of flexible sensors on variety of areas.
机译:灵活的电子产品在医疗保健,人体运动检测和人机相互作用上具有显着潜在的应用,在新兴电子领域引起了大量的关注。特别地,柔性传感器表现出自然物理信号的感知能力,同时维持柔性和可伸缩性质在柔性电子器件中发挥着关键作用。在文献中,许多工作重点关注纳米材料的开发和结构设计,促进各种柔性电子产品的应用。本文制备了基于导电聚合物复合材料(CPC)的应变传感器,制备碳纳米管(CNT)。具体地,在聚二甲基硅氧烷(PDMS)底物中将CNT的不同重量百分比混合。此外,将硅氧烷液引入CPC,以了解对机电性能的影响。此外,有机硅流体可以调节制备的基于CPC的应变传感器的柔韧性和电导率。此外,部署了循环机电测试以研究所提出的应变传感器的可靠性和动力学机械性能。有趣的是,用于电阻和应用菌株之间的强烈非线性行为,用于具有不同WT%CNT的应变传感器以及是否有机硅流体。为了了解这种非线性行为背后的机制,讨论了导电网络竞争和时间依赖性材料的机械性能以支持所提出的实验结果。据信,对准备基于CPC的应变传感器的非线性行为的基本理解可以为各种区域进行柔性传感器的广泛应用铺平道路。

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