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Eliminating lightning strike damage to carbon fiber composite structures in Zone 2 of aircraft by Ni-coated carbon fiber nonwoven veils

机译:消除镀镍碳纤维非织造布对飞机2区碳纤维复合结构的雷击伤害

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摘要

By using standardized Waveforms C and D, this study explored the lightning strike protection (LSP) effectiveness of nickel coated carbon fiber nonwoven veils (Ni-CFNVs) on protecting the carbon fiber composite structures in Zone 2 (aircraft lightning zoning). The post-lightning damage was evaluated by visual inspection, ultrasonic scan and residual strength test. Results showed that the Ni-CFNV of 70 g/m2eliminated lightning strike damage inflicted by both waveforms and it even performed better than the commercial expanded copper foil of 73 g/m2. Therefore, the Ni-CFNV will be a promising alternative to metal mesh for eliminating lightning strike damage to the structures in Zone 2. The remarkable LSP effectiveness of Ni-CFNV can be explained by its integration of high electrical conductivity of Ni-coating and prominent ablation resistance of carbon fiber. The experiments indicate that not only the electrical conductivity, but also the ablation resistance of LSP layer greatly influences the LSP effectiveness.
机译:通过使用标准化的波形C和D,本研究探讨了镀镍碳纤维无纺布(Ni-CFNV)对保护区域2(飞机雷区)中碳纤维复合结构的雷击防护(LSP)的有效性。雷击后的损坏通过目视检查,超声波扫描和残余强度测试进行评估。结果表明,Ni-CFNV为70μg/ m2消除了两种波形对雷击的破坏,甚至比73μg/ m2的商用膨胀铜箔性能更好。因此,Ni-CFNV将成为一种有希望的金属网替代品,以消除对区域2中的结构造成的雷击损坏。Ni-CFNV的显着的LSP有效性可以用其高的Ni涂层导电性和突出的综合性来解释。碳纤维的抗烧蚀性。实验表明,不仅电导率,而且LSP层的抗烧蚀性都大大影响LSP的有效性。

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