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Lightning strike resistance of an electrically conductive CFRP with a CSA-doped PANI/epoxy matrix

机译:具有CSA掺杂的PANI /环氧树脂基质的导电CFRP的耐雷击性

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An analysis of a structural damage extent of a developed electrically conductive CFRP composite exposed to the high-current electrical discharges simulating lightning strikes was conducted in order to evaluate its ability of carrying on lightning electrical current and its damage resistance during lightning events. The composite was fully fabricated from organic compounds, i. e. electrically conductive polymer blend of polyaniline (PANI) doped with camphorsulfonic acid ( CSA) and epoxy resin, and carbon fabric used both as a mechanical reinforcement as well as supporting electrical conductor for ensuring adequate electrical conductivity and mechanical properties. An investigation of lightning strike resistance was performed during high-voltage and high-current mode tests. For preliminary evaluation the resulting damage was examined using visual inspection. Furthermore, the ultrasonic testing and X-ray computed tomography were applied for evaluation of degradation mechanisms occurring during a typical lightning strike event. The obtained results show that the developed composite is characterized by good electrical conductivity and mechanical properties and may successfully resist high-current impulse discharges typical for lightning strike events. Therefore, the developed composite can be considered as a potential candidate for a lightning strike protection material in aircraft industry and other applications. (C) 2017 Elsevier Ltd. All rights reserved.
机译:为了评估其在雷电事件中的承受雷电流的能力和耐破坏性,对开发的暴露于模拟雷击的高电流放电的导电CFRP复合材料的结构破坏程度进行了分析。该复合材料完全由有机化合物制成。 e。掺杂有樟脑磺酸(CSA)和环氧树脂的聚苯胺(PANI)和碳纤维织物的导电聚合物共混物,既可以用作机械增强材料,又可以用作支撑电导体,以确保足够的电导率和机械性能。在高压和大电流模式测试期间进行了抗雷击性能的调查。为了进行初步评估,使用目测检查了所造成的损坏。此外,超声测试和X射线计算机断层摄影技术用于评估在典型的雷击事件中发生的降解机理。所得结果表明,所开发的复合材料具有良好的导电性和机械性能,并且可以成功地抵抗雷击事件中典型的大电流脉冲放电。因此,开发的复合材料可被认为是飞机工业和其他应用中雷击防护材料的潜在候选材料。 (C)2017 Elsevier Ltd.保留所有权利。

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