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Aerogel/epoxy thermal coatings for carbon fibre reinforced plastic substrates

机译:用于碳纤维增强塑料基材的气凝胶/环氧热涂料

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摘要

The present work studies an aerogel/epoxy composite that was dip coated onto a carbon fibre substrate by adding the aerogel at the 1 h and the 1.5 mark of the epoxy cure. Both coatings show decrease in thermal conductivity values (39% and 47% respectively) when compared to a pure epoxy coating. The coatings' reflectance spectra also provided further evidence for the existence of the nano-pores within the aerogel particles. The aerogel coating was modelled using material properties from literature and solved using finite element methods. The model, which validated using experimental data, was then used to predict the coating's performance in cyclic thermal loads. Additionally, coatings on a single surface- top and bottom; were also modelled and compared with the double coating system wherein it was seen that the double coating system had the lowest rate of temperature change and fluctuations at steady-state in contrast to the bottom coating which, showed the fastest drop in temperature as well as the highest fluctuations at steady state conditions. The performance of the top coating was in the middle.
机译:本作研究通过在1小时和环氧固化的1.5标记中加入气凝胶,研究了气凝胶/环氧复合材料,该气凝胶/环氧复合材料通过在1小时和环氧固化的1.5标记中加入碳纤维基材上。与纯环氧涂层相比,两种涂层显示出导热率值(分别为39%和47%)。涂层的反射光谱还提供了进一步证据了气凝胶颗粒内的纳米孔的存在。使用来自文献的材料性质模拟气凝胶涂层并使用有限元方法解决。然后使用使用实验数据验证的模型来预测涂层在循环热负荷中的性能。另外,在单个表面和底部的涂层;也与双涂层系统进行建模并进行比较,其中可以看出,与底部涂层相比,双涂层系统具有最低的温度变化率和稳态的波动,底部涂层显示出最快的温度下降以及稳态条件下的最高波动。顶部涂层的性能在中间。

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