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Low-temperature plasma treatment of carbon fibre/epoxy resin composite

机译:碳纤维/环氧树脂复合材料的低温等离子体处理

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摘要

To gain insight into bonded repairs, which are commonly applied to damaged composites, we herein investigate the effects of low-temperature plasma treatment on the surface properties of a carbon fibre/epoxy resin composite, revealing that this treatment enhances the bonding strength between the patch and damaged surface. Moreover, we probe the water contact angle, chemical composition, tensile-shear strength, and morphology of composite surfaces, showing that under optimal conditions, plasma treatment decreases the water contact angle from 78 degrees to 35.5 degrees, increases the surface energy by a factor of similar to 2.3, and induces the formation of surface-bound oxygen-containing groups, increasing the O/C ratio by similar to 70%. Compared to that of the untreated composite, the tensile-shear strength of the plasma-treated composite initially increases and subsequently decreases with increasing treatment time, with the maximum increase reaching 117%. Finally, the obtained experimental data allow the above-mentioned plasma treatment to be modelled by a four-stage process.
机译:为了获得常见于损坏复合材料的粘结修复,我们在本文中研究了低温等离子体处理对碳纤维/环氧树脂复合材料的表面性质的影响,揭示该处理能够增强贴剂之间的粘合强度表面损坏。此外,我们探测了复合表面的水接触角,化学成分,拉伸剪切强度和形态,表明在最佳条件下,等离子体处理将水接触角从78度降低至35.5度,通过一个因素增加表面能量与2.3相似,并诱导形成表面结合的含氧基团,增加到70%的O / C比。与未处理的复合材料相比,等离子体处理的复合材料的拉伸剪切强度最初增加并随后随后随后随着治疗时间的增加而降低,最大增加达到117%。最后,所获得的实验数据允许上述等离子体处理通过四阶段的方法进行建模。

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