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Adhesion of carbon fibers to amine hardened epoxy resin: Influence of ammonia plasma functionalization of carbon fibers

机译:碳纤维与胺硬化环氧树脂的粘合性:碳纤维氨等离子体功能化的影响

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The modification of carbon fiber surface properties represents a powerful tool to improve the adhesion between fibers and polymeric matrix in carbon fiber reinforced polymers. In the presented work the surface of untreated carbon fibers, taken from the production process directly after carbonization, is functionalized by a low pressure ammonia plasma treatment. Compared to the untreated fibers an enhanced concentration of surface nitrogen functionalities and an increased surface energy are observed. This leads to an improved wetting behavior, similar to that of carbon fibers activated by anodic oxidation. No changes of the fiber surface topography on micro- and on nanoscale are induced by the plasma treatment. Compared to the untreated fiber no increase of interfacial fracture toughness between the plasma treated fibers and an amine hardened epoxy resin is detected by single fiber push-out tests. Anodically oxidized fibers, in contrast, show a significant increase of interfacial fracture toughness. The results suggest, that adhesion of carbon fibers to an amine hardened epoxy resin is dominantly enhanced by interactions between surface oxygen functionalities and the components of the resin. In contrast, nitrogen surface functionalities appear to be of minor importance for fiber matrix adhesion in carbon fiber reinforced amine hardened epoxy resin. (C) 2018 Elsevier B.V. All rights reserved.
机译:碳纤维表面性能的改变代表了一种强大的工具,可以改善碳纤维增强聚合物中纤维与聚合物基体之间的附着力。在提出的工作中,碳化后直接从生产过程中获取的未经处理的碳纤维表面通过低压氨等离子体处理功能化。与未处理的纤维相比,观察到提高的表面氮官能度浓度和增加的表面能。这导致改善的润湿行为,类似于通过阳极氧化活化的碳纤维的润湿行为。等离子体处理不会引起微米级和纳米级的纤维表面形貌变化。与未处理的纤维相比,通过单纤维推出测试未检测到等离子体处理的纤维与胺硬化环氧树脂之间的界面断裂韧性的增加。相反,阳极氧化纤维显示出界面断裂韧性的显着提高。结果表明,通过表面氧官能度和树脂组分之间的相互作用,碳纤维对胺硬化环氧树脂的粘附力显着增强。相反,氮表面功能对于碳纤维增强的胺硬化环氧树脂中的纤维基质粘附似乎次要。 (C)2018 Elsevier B.V.保留所有权利。

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