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Evaluation of Breakdown Current Density of Carbon Nanotube Sheets and Their Composites for Lightning Strike Protection

机译:碳纳米管板击穿电流密度及其复合材料评价及雷击保护

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A combination of the high electrical conductivity, excellent mechanical properties and low density of carbon nanotubes (CNTs) suggests the potential of CNT-based materials to replace existing lightning strike protection technologies based on metal meshes. This study focuses on the development of a screening test method using the current carrying capacity (CCC)to evaluate CNT-based films and their composites. The method simultaneously provides breakdown current density (Jb) and breakdown temperature. The testing setup consists of bowtie shaped coupons connected to a power source and carrying electricity until degradation of the sample causes a current drop. Normalization of Jb values to the volumetric mass density (specific Jb) enables consideration of the potential weight savings with each material. The higher specific Jb of CNT-based films in comparison to existing standard materials based on metallic meshes suggests the advantage of CNT-based films for future development of a lighter protective layer against lightning strikes.
机译:高电导率,优异的机械性能和低密度的碳纳米管(CNT)的组合表明基于CNT的材料的潜力,以替代基于金属网格的现有雷击保护技术。本研究重点介绍使用电流承载能力(CCC)进行筛选试验方法来评估基于CNT的薄膜及其复合材料。该方法同时提供击穿电流密度(JB)和击穿温度。测试设置由连接到电源的弓形形优惠券和承载电,直到样品的劣化导致电流下降。 JB值对体积质量密度(特定JB)的归一化能够考虑各种材料的潜在重量。与基于金属网的现有标准材料相比,基于CNT的薄膜的较高的jB表明了基于CNT的薄膜的优势,以便对雷击较轻的保护层的未来发展。

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