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An investigation of multimodal sensing capabilities of ionic polymer-metal composites

机译:离子聚合物 - 金属复合材料多峰传感能力研究

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This paper presents the novel multimodal sensing capabilities of ionic polymer metal composites (IPMCs) for measuring linear and rotational deformations. Two IPMC samples with Gold (Au) and black Platinum (Pt) electrodes were manufactured, and their responses under twisting and axial compression/tension were investigated. To perform consistent and rigorous experiments to study the multimodal sensing capabilities of the IPMC samples, an experimental test bed was developed that enabled the application of twisting, axial compression, and axial tension to the IPMC strips both in a separate and combined manner, while recording their generated voltage responses. Through rigorous experiments, this study demonstrates the unique sensing capabilities of IPMCs to create distributed nanosensing over the entire body of the IPMC sample. Upon various types of deformations, IPMCs were shown to generate unique and distinct output voltage signals that were highly correlated with the type of motions induced. In particular, the strongest correlations of more than 0.9 were found between the IPMCs' responses and the applied mechanical stimuli in the twisting and axial compression modes, while moderate correlations were observed in the axial tension mode. These results provide a proof-of-concept for the future use of IPMCs as flexible and versatile sensors for measuring linear and rotational motions in applications such as wearable soft robotics.
机译:本文介绍了用于测量线性和旋转变形的离子聚合物金属复合材料(IPMC)的新型多峰传感能力。制造具有金(Au)和黑铂(Pt)电极的两个IPMC样品,并研究了它们在扭曲和轴向压缩/张力下的反应。为了执行一致的和严格的实验来研究IPMC样品的多模式传感能力,开发了一种实验试验床,使得能够在单独的和组合的方式上施加扭曲,轴向压缩和轴向张力,两者都以单独的方式和组合的方式施加到IPMC条带上它们产生的电压响应。通过严格的实验,本研究表明了IPMCS在IPMC样本的整个身体上产生分布式纳米溶解的独特感测能力。在各种类型的变形上,示出了IPMC,以产生与诱导的运动类型高度相关的独特且不同的输出电压信号。特别地,在IPMC的响应和扭曲压缩模式中的施加的机械刺激之间发现了大于0.9的最强相关性,而在轴向张力模式下观察到中等相关性。这些结果为未来使用IPMCS作为柔性和多功能传感器提供了一种概念,用于测量可穿戴软机器人等应用中的线性和旋转运动。

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