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Analysis on electrical and thermal conduction of carbon fiber composites under lightning based on electrical-thermal-chemical coupling and arc heating models

机译:基于电热化学耦合和电弧加热模型的碳纤维复合材料在闪电作用下的导电和导热分析

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摘要

Based on arc heating involved electrical-thermal-chemical coupling models of CFRPs subjected to combined lightning components D and C, the changing characteristics of the electrical potential and pyrolysis degree with time in specific locations were analyzed to reveal the electrical conduction mechanism related to resin pyrolysis. Moreover, by comparing to the results calculated by the Joule heat model, the different effects between Joule and arc heating during lightning components D and C were discriminated. The results show that the arc heating has little effect on the temperature rise of CFRPs during component D for lack of the transient response, whereas the arc heating effect plays a dominant role during component C as there is enough time for heat conduction. The work offers a fundamental understanding of the electro-thermal characteristics of CFRPs for lightning damage.
机译:基于电弧加热涉及的碳纤维增强塑料在雷电成分D和C共同作用下的电热化学耦合模型,分析了特定位置的电势和热解度随时间的变化特征,揭示了与树脂热解有关的导电机理。此外,通过与焦耳热模型计算的结果进行比较,可以区分雷电分量D和C期间焦耳和电弧加热之间的不同影响。结果表明,由于缺乏瞬态响应,电弧加热对组分D中CFRP的温度升高影响很小,而电弧加热效应在组分C中起主导作用,因为有足够的时间进行导热。这项工作为CFRP的电热特性提供了基本的了解,以防雷击。

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