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Lightning Strike Protection and EMI Shielding of Fiber Reinforced Composite using Gold and Silver Nanofilms

机译:雷击保护和纤维增强复合材料的EMI屏蔽用金银纳米丝

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Carbon fiber reinforced composites are very much imperative to future-generation aircraft structures. However, lightning strike protection (LSP) and electromagnetic interference (EMI) are main concerns. Carbon fibers have very good mechanical properties with the best strength-to-weight ratio, but they are very poor conductors of electricity. These fibers must be reinvented to increase the surface conductance to provide high electrical conductivity to the aircraft structure. The present study deals with preparing composite sandwich structures of carbon fibers used for commercial nacelle applications subject to lightning strike effects with different metallic nanofilm of gold (Au) and silver (Ag) measuring approximately 100 nm. These metallic nanofibers were co-cured on the top layers of composite panels during vacuum curing process. In our laboratory, lightning strike results for a composite sandwich structure using nanofilms were obtained to observe lightning strike damage and structural tolerance necessary to observe the damage tolerance capability. Resistance of composite panels with metallic nanofilm under various strains was studied. It was found that resistance of the metallic nanofilm increased under strain. The voltage was found to be low; hence, an increase in current would help to reduce the damage on composite panels due to lightning strikes, and the same theory would be applicable to EMI. No EMI was absorbed or reflected in the nanofilm using the P-static test. When lightning strikes were applied to composite coupons, the resulting damage from the currents was reduced on those with metallic nanofilms.
机译:碳纤维增强复合材料是非常必要的,以未来一代飞机结构。然而,雷击保护(LSP)和电磁干扰(EMI)是主要关注的问题。碳纤维具有最佳的强度 - 重量比非常良好的机械性能,但它们的电力非常不良导体。这些纤维必须被改造以增加表面电导,以提供高导电性到航空器结构。本研究涉及制备用于商业应用机舱须与(Au)的尺寸约为100纳米的金不同的金属纳米薄膜和银(Ag)雷击影响的碳纤维的复合材料夹层结构。这些金属纳米纤维对复合板的顶层中真空固化过程共固化。在我们的实验室,获得了使用纳米薄膜的复合夹层结构雷击结果观察雷击损坏和结构耐受性需要观察的损伤容限性能。用在各种菌株金属纳米薄膜复合板的电阻进行了研究。结果发现,在金属纳米薄膜电阻应变下增加。的电压被认为是低;因此,电流的增加将有助于减少对复合板由于雷击的伤害,同样的理论是适用于EMI。没有EMI被吸收或者使用P-静态试验反映在纳米膜。当雷击被施加到复合材料试样,由电流所产生的损害是在那些具有金属纳米膜减少。

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