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In situ SEM studies on strain sensing mechanisms of PPy-coated electrically conducting fabrics

机译:原位SEM研究PPy涂层导电织物的应变传感机制

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This paper studies a flexible fabric strain sensor from PPy-coated fabrics prepared by a chemical vapor deposition method under low temperature, placing an emphasis on mechanisms of its strain sensing behavior. In situ tensile tests in a scanning electron microscope (SEM) were conducted for PPy-coated electrically conducting yarns, which were prepared by the same procedure as that for the PPy-coated fabrics, enabling it possible to observe in situ the phenomena that occurred on the fiber surface during fabric deformation. The investigation revealed that the PPy-coated nylon/polyurethane fabrics exhibited a high strain sensitivity of over 400 and very large workable strain range greater than 50%, which mainly attributes to the high conductivity and crack-opening and crack-closing mechanisms of PPy-coated polyurethane yarn, as well as the excellent properties of knitted fabric structure.
机译:本文研究了一种由低温化学气相沉积法制备的PPy涂层织物制成的柔性织物应变传感器,重点研究了其应变传感行为的机理。在PPy包覆的导电纱线上用扫描电子显微镜(SEM)进行原位拉伸试验,该过程是通过与PPy包覆的织物相同的步骤制备的,从而可以现场观察在其上发生的现象。织物变形过程中的纤维表面。调查显示,PPy涂层的尼龙/聚氨酯织物表现出超过400的高应变敏感性,并且很大的可用应变范围大于50%,这主要归因于PPy-的高导电性以及开裂和开裂机理涂层聚氨酯纱,以及针织物结构的优良性能。

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