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Flexible Tactile Sensor Array Based on Aligned MWNTs-PU Composited Sub-Microfibers

机译:基于对准的MWNTs-PU复合亚微纤维的柔性触觉传感器阵列

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摘要

This present paper describes a novel method to fabricate tactile sensor arrays by producing aligned multi-walled carbon nanotubes (MWNTs)-polyurethane (PU) composite sub-microfiber (SMF) arrays with the electrospinning technique. The proposed sensor was designed to be used as the artificial skin for a tactile sensation system. Although thin fibers in micro- and nanoscale have many good mechanical characteristics and could enhance the alignment of MWNTs inside, the high impedance as a consequence of a small section handicaps its application. In this paper, unidirectional composite SMFs were fabricated orthogonally to the parallel electrodes through a low-cost method to serve as sensitive elements (SEs), and the impedances of SEs were measured to investigate the changes with deformation caused by applied force. The particular piezoresistive mechanism of MWNTs disturbed in SMF was analyzed. The static and dynamic test results of the fabricated tactile sensor were also presented to validate the performance of the proposed design.
机译:本文介绍了一种通过静电纺丝技术生产对准的多壁碳纳米管(MWNTs)-聚氨酯(PU)复合亚超细纤维(SMF)阵列来制造触觉传感器阵列的新方法。拟议中的传感器被设计用作触觉感觉系统的人造皮肤。尽管微米级和纳米级的细纤维具有许多良好的机械特性,并且可以增强内部MWNT的排列,但由于截面小而导致的高阻抗妨碍了其应用。本文通过一种低成本的方法,以平行电极正交的方式制备了单向复合SMF,用作敏感元件(SE),并测量了SE的阻抗,以研究施加力引起的变形的变化。分析了SMF扰动的MWNTs的特殊压阻机理。还提出了所制造的触觉传感器的静态和动态测试结果,以验证所提出设计的性能。

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