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Multi-functional Reactive Graphitic Nanofibers (r- GNFs)-Epoxy Resin as Matrix for Composites

机译:多功能反应性石墨纳米纤维(r- GNFs)-环氧树脂作为复合材料的基质

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Functionalized graphitic nanofibers (GNFs) with 3,4'-oxydianiline (ODA) were reacted with butyl glycidyl ether to produce reactive graphitic nanofibers (r-GNFs). These r-GNFs when mixed with epoxy resin formed a unified matrix system in which the reactive hydrogen of the -OH group could initiate the curing reaction. Notably, the addition of r-GNFs into the epoxy system significantly decreased both the viscosity and surface energy of the pure epoxy. Consequently the wettability of ultra high molecular weight polyethylene (UHMWPE) fibers with epoxy resin was increased in the presence of r-GNFs. Single fiber and bundle fiber pull-out tests were performed and an improvement in interfacial adhesion between UHMWPE and r-GNF/epoxy matrix system was observed when compared to the baseline UHMWPE/epoxy system. Moreover, the electrical conductivity of the epoxy resin was increased by several orders of magnitude with the addition of these r-GNFs. In this work, epoxy resin systems containing 0.1-0.5 wt% r-GNFs were studied and the epoxy with 0.3 wt% r-GNFs showed the most effective results, indicating an optimum concentration existed for both processing and performance.
机译:使具有3,4'-氧二苯胺(ODA)的功能化石墨纳米纤维(GNF)与丁基缩水甘油醚反应生成反应性石墨纳米纤维(r-GNF)。这些r-GNF与环氧树脂混合后形成一个统一的基质体系,其中-OH基的活性氢可以引发固化反应。值得注意的是,在环氧树脂体系中添加r-GNF会显着降低纯环氧树脂的粘度和表面能。因此,在r-GNF的存在下,超高分子量聚乙烯(UHMWPE)纤维与环氧树脂的润湿性增加。与基准UHMWPE /环氧树脂体系相比,进行了单纤维和束纤维的拉出测试,观察到UHMWPE和r-GNF /环氧树脂基质体系之间的界面粘合性得到了改善。此外,通过添加这些r-GNF,环氧树脂的电导率增加了几个数量级。在这项工作中,研究了含0.1-0.5 wt%r-GNFs的环氧树脂体系,含0.3 wt%r-GNFs的环氧树脂显示了最有效的结果,表明在工艺和性能上都存在最佳浓度。

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