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Lightweight, Flexible, High-Performance Carbon Nanotube Cables Made by Scalable Flow Coating

机译:可伸缩流动涂层制造的轻质,柔性,高性能碳纳米管电缆

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Coaxial cables for data transmission are ubiquitous in telecommunications, aerospace, automotive, and robotics industries. Yet, the metals used to make commercial cables are unsuitably heavy and stiff. These undesirable traits are particularly problematic in aerospace applications, where weight is at a premium and flexibility is necessary to conform with the distributed layout of electronic components in satellites and aircraft. The cable outer conductor (OC) is usually the heaviest component of modern data cables; therefore, exchanging the conventional metallic OC for lower weight materials with comparable transmission characteristics is highly desirable. Carbon nanotubes (CNTs) have recently been proposed to replace the metal components in coaxial cables; however, signal attenuation was too high in prototypes produced so far. Here, we fabricate the OC of coaxial data cables by directly coating a solution of CNTs in chlorosulfonic acid (CSA) onto the cable inner dielectric. This coating has an electrical conductivity that is approximately 2 orders of magnitude greater than the best CNT OC reported in the literature to date. This high conductivity makes CNT coaxial cables an attractive alternative to commercial cables with a metal (tin-coated copper) OC, providing comparable cable attenuation and mechanical durability with a 97% lower component mass.
机译:用于数据传输的同轴电缆在电信,航空航天,汽车和机器人工业中无处不在。然而,用于制造商业电缆的金属过重且坚硬。这些不希望有的特性在航空航天应用中特别成问题,在航空航天应用中,重量非常宝贵,并且必须有灵活性才能符合卫星和飞机中电子组件的分布式布局。电缆外导体(OC)通常是现代数据电缆中最重的组件。因此,非常需要将传统的金属OC换成具有可比传输特性的低重量材料。最近,人们提出了碳纳米管(CNTs)来代替同轴电缆中的金属成分。但是,到目前为止生产的原型中信号衰减过高。在这里,我们通过将CNT在氯磺酸(CSA)中的溶液直接涂覆到电缆内部电介质上来制造同轴数据电缆的OC。该涂层的电导率比迄今为止文献中报道的最佳CNT OC大约2个数量级。这种高导电率使CNT同轴电缆成为具有金属(镀锡锡的铜)OC的商用电缆的有吸引力的替代品,可提供可比的电缆衰减和机械耐久性,且部件质量降低97%。

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