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Numerical Analysis for Lightning Damage of CFRP Based on its Dynamic Electrical Conductivity

机译:基于其动态电导率的CFRP雷击数值分析

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The damage behavior of carbon fiber reinforced polymer (CFRP) composites subjected to lightning component A (20–100 kA) was studied based on the analysis of the dynamic conductive properties of CFRPs. The dynamic conductivities were introduced into the coupled multifield model for CFRP lightning damage simulation for the first time. The simulated damage results were obtained from the numerical models which established based on different conductivities. The rationality of these simulation models was analyzed. The comparison between experiment and simulation results showed that the dynamic conductivity simulation model can more realistically simulate the conductive state of CFRPs subjected to actual lightning impulse. The dynamic conductivity model can reduce the deviation of damage areas and depths between the calculation and experiment from + 304% and −39.2% (in DC conductivity simulation model) to −4.9% and + 2.9%, respectively. Lightning damage area increased as the in-plane and in-thickness conductivities decreased. The anisotropic distribution of the damaged area was also affected by the ratio of the longitudinal and transverse conductivities. The lightning damage depth had the non-monotonic variation characteristics that increased first and then decreased as the in-thickness conductivity decreased.
机译:基于CFRP的动态导电性能分析,研究了对闪电组分A(20-100ka)进行闪电组分A(20-100kA)的损伤行为。动态电导率被引入到CFRP雷电损坏模拟中的耦合多级模型中。模拟损伤结果是从基于不同电导率建立的数值模型获得的。分析了这些仿真模型的合理性。实验和仿真结果之间的比较表明,动态电导率模拟模型可以更现实地模拟经受实际避雷冲击的CFRP的导电状态。动态电导率模型可以将损伤区域和深度从+ 304%和-39.2%(在直流电导率模拟模型中)降低到-4.9%和+ 2.9%之间的损伤区域和深度。随着面内和厚度的导电性降低,雷击损伤区域增加。受损区域的各向异性分布也受纵向和横向导电的比率的影响。雷击损伤深度具有较高的非单调变化特性,然后随着厚度的电导率降低而降低。

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