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EM Performance of Conductive Composite Laminate Made of Nanostructured Materials for Aerospace Application

机译:航空航天用纳米结构材料制成的导电复合层压板的电磁性能

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This paper presents the characterization of electro-magnetic (EM) performance of conductive composite laminate in consideration for aeronautic design. Novel nanocomposite resin was prepared by incorporating nanofillers into neat epoxy, resulting in remarkable improvement of its electrical conductivity. The planar structure of conductive composite laminate, which consists of 33 layers of woven fabric carbon fiber sandwiched in the nanocomposite, was then fabricated under the optimal conditions offering many times higher conductivity than the composite laminate using neat resin. Simulations of newly-developed composite laminate exposed to lightning strike were performed. The comparative studies show that conductive composite laminate provides better lightning protection property than composite laminate with epoxy resin. The simulated shielding effectiveness of the composite panel is in good agreement with measured results in both S and X microwave bands. The shielding effectiveness of the conductive composite laminate characterized at the frequency above 1 GHz is less than 10% different from that of conventional composite with copper wire mesh on the outer layer currently-used in aerospace industry. The result of this study shows promising aspect in the EM design using nanostructured composite laminate.
机译:本文介绍了考虑航空设计的导电复合材料层压板的电磁(EM)性能表征。通过将纳米填料掺入纯净的环氧树脂中来制备新型纳米复合树脂,从而显着提高其导电性。然后在最佳条件下制造导电复合层压板的平面结构,该结构由33层夹在纳米复合材料中的机织碳纤维构成,其导电率比使用纯树脂的复合层压板高出许多倍。模拟了新开发的复合层压板遭受雷击。比较研究表明,导电复合层压板比环氧树脂复合层压板具有更好的防雷性能。复合板的模拟屏蔽效果与S和X微波波段的测量结果都非常吻合。以高于1 GHz的频率为特征的导电复合材料层压板的屏蔽效果与目前航空航天工业中使用的外层铜丝网的传统复合材料的屏蔽效率相差不到10%。这项研究的结果显示了使用纳米结构复合层压板的EM设计中有希望的方面。

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