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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical modelling of thermal decomposition processes and associated damage in carbon fibre composites
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Numerical modelling of thermal decomposition processes and associated damage in carbon fibre composites

机译:碳纤维复合材料热分解过程及相关破坏的数值模拟

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摘要

Thermo-chemical degradation of carbon fibre composite (CFC) materials under intensive heat fluxes are modelled. The model couples together heat diffusion, polymer pyrolysis with associated gas production and convection through partially decomposed CFCs, and changes in transport properties of the material due to the damage. The model is verified by laser ablation experiments with controlled heat input. The numerical predictions indicate that the thermal gas transport has a minimal effect on the decomposition extent. On the other hand, the model shows that the internal gas pressure is large enough to cause fracture and delamination, and the damage extent may go far beyond the decomposition region as witnessed from experimental verification of the model.
机译:对碳纤维复合材料(CFC)在强热通量下的热化学降解进行了建模。该模型将热扩散,聚合物热解以及相关的气体生成和对流通过部分分解的CFC耦合在一起,以及由于损坏而导致的材料传输特性的变化。该模型通过在受控热量输入的激光烧蚀实验中得到验证。数值预测表明,热气体传输对分解程度的影响最小。另一方面,该模型表明内部气压足够大,足以引起破裂和分层,并且从模型的实验验证可以看出,其破坏程度可能远远超出了分解区域。

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