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Modelling of lightning strike damage to CFRP composites with an advanced protection system. Part I: Thermal-electrical transition

机译:利用先进的保护系统对CFRP复合材料的雷击破坏进行建模。第一部分:热电转换

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Lightning strike damage in carbon fiber reinforced polymer (CFRP) composites with a lightning strike protection (LSP) system involves complex mechanisms. Few numerical studies simulating lightning strike damage have been developed considering the dielectric breakdown of LSP systems under lightning strike. This study presents a coupled thermal-electrical finite element (FE) model of the evolution of damage in CFRP composites with different advanced LSP systems under lightning strike. The advanced LSP system consists of a buckypaper layer and an adhesive layer. The dielectric breakdown strength of the adhesive layer and CFRP composite is incorporated into the FE model by an ABAQUS subordinate functionality. First, the FE model is utilized to predict damage to a CFRP composite without an LSP system. It is found that the predicted area and depth of damage agree well with the experimental data. Then, the lightning strike damage to CFRP composites with different LSP systems is quantitatively determined by the FE analysis. The results show that, after addressing dielectric breakdown, the FE predictions are comparable with experimental results for various LSP systems. (C) 2017 Elsevier Ltd. All rights reserved.
机译:具有雷击防护(LSP)系统的碳纤维增强聚合物(CFRP)复合材料的雷击损坏涉及复杂的机制。考虑到LSP系统在雷击下的介电击穿,很少有模拟雷击破坏的数值研究。这项研究提出了雷电作用下具有不同先进LSP系统的CFRP复合材料中损伤演变的热电有限元(FE)耦合模型。先进的LSP系统由布基纸层和粘合层组成。粘合剂层和CFRP复合材料的介电击穿强度通过ABAQUS从属功能纳入FE模型。首先,FE模型用于预测没有LSP系统的CFRP复合材料的损坏。发现预测的损伤面积和损伤深度与实验数据吻合良好。然后,通过有限元分析定量地确定了不同LSP体系对CFRP复合材料的雷击损伤。结果表明,解决介电击穿问题后,有限元预测与各种LSP系统的实验结果可比。 (C)2017 Elsevier Ltd.保留所有权利。

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