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Surface modification of carbon/epoxy prepreg using oxygen plasma and its effect on the delamination resistance behavior of carbon/epoxy composites

机译:氧等离子体对碳/环氧预浸料的表面改性及其对碳/环氧复合材料抗分层性能的影响

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It was shown in previous study that the fracture toughness of carbon/epoxy laminated composites could be significantly improved by modifying the surface of the prepreg using Ar~+ irradiation in an oxygen environment. In this study, the surface of carbon/epoxy prepreg was modified using an oxygen plasma to improve the delamination resistance behavior of carbon/epoxy laminated composites. The variation of the contact angle on the prepreg surface was determined as a function of the modification time, in order to determine the optimal modification time. An XPS analysis was conducted to investigate the chemical changes on the surface of the prepreg caused by the plasma modification. Mode Ⅰ delamination resistance curves of the composites with and without surface modification were plotted as a function of the delamination increment. The results showed that the contact angle varied from ~64° to ~47° depending on the modification time and reached a minimum for a modification time of 30 min. The XPS analysis showed that the hydrophilic carbonyl C=O group was formed by the oxygen plasma modification. The results also showed that the delamination resistance behavior was significantly improved by the plasma modification of the prepreg. This improvement was caused by the better layer-to-layer adhesion as well as increased interfacial strength between the fibers and matrix.
机译:先前的研究表明,通过在氧气环境中使用Ar〜+辐照改性预浸料的表面,可以显着提高碳/环氧层压复合材料的断裂韧性。在这项研究中,碳/环氧预浸料的表面使用氧等离子体进行了改性,以改善碳/环氧层压复合材料的抗分层性能。根据改性时间确定在预浸料坯表面上的接触角的变化,以便确定最佳的改性时间。进行了XPS分析,以研究血浆改性引起的预浸料表面化学变化。绘制了有和没有表面改性的复合材料的Ⅰ型脱层阻力曲线,作为脱层增量的函数。结果表明,接触角随改性时间的不同而变化,从〜64°到〜47°,在30分钟的改性时间内达到最小。 XPS分析表明,通过氧等离子体改性形成了亲水性羰基C = O基团。结果还表明,通过预浸料的等离子体改性显着改善了抗脱层性能。这种改善是由于更好的层间粘附力以及纤维与基质之间的界面强度提高所致。

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