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Lightning strike damage detection at a fastener using self-sensing TDR of composite plate

机译:使用复合板自感TDR的紧固件雷击损坏检测

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摘要

Carbon fibre reinforced polymer (CFRP) composites structures are widely used in aeroplane structures. When a lightning strike affects fasteners or leak electric current of the lightning strike arrives at fasteners, the fasteners play serve as conducting electrodes for the CFRP plate. This current might cause complicated damage in the CFRP plate. The authors have developed self-sensing TDR to detect damage. Self-sensing TDR is used in this study to monitor lightning strike damage around a CFRP plate fastener hole. The lightning strike electric current is applied directly to a fastener. Thereafter, self-sensing TDR is applied. The lightning strike damage is investigated using cross-sectional inspection to clarify the mechanisms of the monitoring using TDR. Results show that the method can detect a 30 kA strike. Peeling of the GFRP insulator causes a characteristic impedance change, which in turn causes signal reflection of the transmission line. (C) 2015 Elsevier Ltd. All rights reserved.
机译:碳纤维增强聚合物(CFRP)复合材料结构被广泛用于飞机结构中。当雷击影响紧固件或雷击的泄漏电流到达紧固件时,紧固件充当CFRP板的导电电极。该电流可能会在CFRP板上造成复杂的损坏。作者已经开发出自感TDR以检测损坏。本研究使用自感应TDR来监视CFRP板紧固件孔周围的雷击损坏。雷电流直接施加到紧固件上。此后,应用自感应TDR。使用横截面检查来研究雷击损害,以阐明使用TDR进行监视的机制。结果表明,该方法可以检测到30 kA的冲击。 GFRP绝缘子的剥离会引起特性阻抗变化,进而引起传输线的信号反射。 (C)2015 Elsevier Ltd.保留所有权利。

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