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Electrical Properties Enhancement of Carbon Nanotube Yarns by Cyclic Loading

机译:循环载荷通过碳纳米管纱线提高电特性

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摘要

Carbon nanotube yarns (CNTYs) possess low density, high conductivity, high strength, and moderate flexibility. These intrinsic properties allow them to be a preferred choice for use as conductive elements in high-performance composites. To fully exploit their potential as conductive reinforcing elements, further improvement in their electrical conductivity is needed. This study demonstrates that tensile cyclic loading under ambient conditions improves the electrical conductivity of two types of CNTYs. The results showed that the electrical resistance of untreated CNTYs was reduced by 80% using cyclic loading, reaching the resistance value of the drawn acid-treated CNTYs. Scanning electron microscopy showed that cyclic loading caused orientation and compaction of the CNT bundles that make up the CNTYs, resulting in significantly improved electrical conductivity of the CNTYs. Furthermore, the elastic modulus was increased by 20% while preserving the tensile strength. This approach has the potential to replace the environmentally unfriendly acid treatment currently used to enhance the conductivity of CNTYs.
机译:碳纳米管纱(CNTYS)具有低密度,高导电性,高强度和中等的柔韧性。这些内在性质允许它们是在高性能复合材料中用作导电元件的首选。为了充分利用它们作为导电增强元件的潜力,需要进一步提高它们的电导率。该研究表明,环境条件下的拉伸循环加载提高了两种类型的Cntys的电导率。结果表明,使用循环载荷,未处理的CNTY的电阻减少了80%,达到了拉伸处理的CnTys的电阻值。扫描电子显微镜显示,循环负载导致构成CNTS的CNT束的取向和压实,导致CNTYS的电导率显着提高。此外,在保持拉伸强度的同时,弹性模量增加了20%。这种方法有可能取代目前用于增强Cntys的导电性的环境不友好的酸治疗。

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