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Lightning Strike Protection and Electromagnetic Interference Shielding of Composite Structures using Conductive Submicron Films

机译:导电亚微米薄膜对复合结构的雷击防护和电磁干扰屏蔽

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Carbon fibers have very good mechanical properties with the best strength-to-weight ratios, but are very poor conductors of electricity, especially when embedded with a resin system. These fibers should be further studied to increase the electrical conductivity of the aircraft structures and enhance the surface conductance of the fiber reinforced composites. The present study deals with the preparation of composite sandwich structures of carbon fibers with submicron copper films and subjecting those to lightning strike effects and EMI shielding. During the tests, the voltages on the conductive composite surfaces were found to be low; hence, an increase in current would help reduce the damage on composite panels after the lightning strikes. The same theory would be applicable to the EMI shielding. When lightning strikes were applied to composite coupons, the resulting damage from the currents was considerably reduced on those with metallic submicron films. Inspection results for the area of damage were correlated with results pertaining to lightning strikes and electromagnetic interference.
机译:碳纤维具有很好的机械性能,具有最佳的强度重量比,但导电性很差,尤其是当嵌入树脂体系时。这些纤维应进一步研究,以增加飞机结构的电导率,并增强纤维增强复合材料的表面电导率。本研究涉及碳纤维与亚微米铜膜的复合夹层结构的制备,并使其经受雷击作用和EMI屏蔽。在测试过程中,发现导电复合材料表面的电压很低。因此,增加电流将有助于减少雷击后对复合面板的损坏。相同的理论将适用于EMI屏蔽。当对复合试样施加雷击时,电流对金属亚微米薄膜所产生的损坏会大大降低。损坏区域的检查结果与雷击和电磁干扰有关。

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