Dynamic electrical characteristics of carbon fiber-reinforced polymer composite under low intensity lightning current impulse

IF 1.7 4区 材料科学 Q3 MATERIALS SCIENCE, COMPOSITES Advanced Composites Letters Pub Date : 2020-08-28 DOI:10.1177/2633366X20942775
Jinru Sun, Xuanjiannan Li, Xiangyu Tian, Jingliang Chen, X. Yao
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引用次数: 5

Abstract

The distribution and conduction path of lightning current inside carbon fiber-reinforced polymer (CFRP) composites subjected to lightning strikes are determined by their dynamic conductive characteristics. An experimental platform that generates lightning current impulses with variable parameters was established to obtain the equivalent conductivities of CFRPs with different laminated structures. The experimental results indicated that the through-thickness conductivity (10−3 S/mm) was much lower than the in-plane conductivity (100 S/mm). Then, the dynamic conduction model of CFRPs was analyzed based on the anisotropic nonlinear conductivities of CFRPs under lightning currents of 50–1000 A. The CFRP laminate could be regarded as a series circuit of resistance and inductance. The dynamic conductance of the CFRP laminate first increased and then decreased during the single lightning current strike process, which was closely related to the conductive properties of the interlaminar resin. The inductive properties of the CFRP material were manifested in the test results, which showed that the voltage reached the peak value prior to the current waveform and the equivalent conductivities of the CFRPs increased as the rate of increase decreased and the duration increased. In addition, the equivalent inductance of the carbon fiber network was found to be an important part of the inductive effect of CFRP laminates. This research is helpful for understanding the complicated relationships in the lightning current conducting process and can provide experimental and theoretical support for CFRP coupled electrical–thermal simulation studies of lightning direct effects.
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低强度雷电冲击下碳纤维增强聚合物复合材料的动态电学特性
雷击作用下碳纤维增强聚合物(CFRP)复合材料内部雷击电流的分布和传导路径由其动态导电特性决定。建立了变参数雷电电流脉冲实验平台,得到了不同层合结构cfrp的等效电导率。实验结果表明,通过厚度的电导率(10 ~ 3 S/mm)远低于面内电导率(100 S/mm)。然后,基于cfrp在50 ~ 1000 A雷电电流作用下的各向异性非线性电导率,分析了cfrp的动态导电模型。CFRP复合材料可以看作是电阻和电感的串联电路。在单次雷击过程中,CFRP复合材料的动态电导先增大后减小,这与层间树脂的导电性能密切相关。CFRP材料的感应特性在试验结果中得到了体现,电压在电流波形之前达到峰值,CFRP材料的等效电导率随着上升速率的减小和持续时间的增加而增加。此外,碳纤维网络的等效电感是CFRP层合板感应效应的重要组成部分。本研究有助于理解雷电导电过程中的复杂关系,为雷电直接效应的CFRP耦合电-热模拟研究提供实验和理论支持。
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来源期刊
Advanced Composites Letters
Advanced Composites Letters 工程技术-材料科学:复合
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审稿时长
4.2 months
期刊介绍: Advanced Composites Letters is a peer reviewed, open access journal publishing research which focuses on the field of science and engineering of advanced composite materials or structures.
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