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Facile Fabrication of PA66/GO/MWNTs-COOH Nanocomposites and Their Fibers

机译:PA66 / GO / MWNTs-COOH纳米复合材料及其纤维的简便制备

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Good dispersion and interfacial compatibility are the key issues to realize the full potential of the physical–mechanical properties of nanocarbon-materials reinforced composites. Styrene–maleic-anhydride-copolymer (SMA)-treated graphene oxide (GO), carboxylated multiwalled carbon nanotubes (MWNTs-COOH), and solid-state shear milling (S3M) were applied to further improve the physical–mechanical properties of the nanocomposite fibers. The results show that a mixture of GO/MWNTs-COOH exhibits good dispersion and interfacial compatibility in polyamide-66 (PA66) matrix. Consequently, the physical–mechanical properties of the fibers, which were spun from the nanocomposite of GO/MWNTs-COOH treated using SMA and S3M methods, show a significant enhancement compared to the untreated fibers as well as better crystallization and thermal properties. In particular, the tensile strength of the PA66/GO/MWNTs-COOH nanocomposite fibers with a loading of 0.3 wt % GO/MWNTs-COOH reaches a maximum (979 MPa), which is the highest among all of the reported literature values. Moreover, the fibers were fabricated by a facile process with efficiency, holding great potential for industrial applications.
机译:良好的分散性和界面相容性是充分发挥纳米碳材料增强复合材料物理机械性能潜力的关键问题。苯乙烯-马来酸酐共聚物(SMA)处理的氧化石墨烯(GO),羧化多壁碳纳米管(MWNTs-COOH)和固态剪切研磨(S3M)用于进一步改善纳米复合材料的物理机械性能纤维。结果表明,GO / MWNTs-COOH的混合物在聚酰胺66(PA66)基体中表现出良好的分散性和界面相容性。因此,与未经处理的纤维相比,由使用SMA和S3M方法处理的GO / MWNTs-COOH纳米复合材料纺制的纤维的物理机械性能显示出显着的增强,并且具有更好的结晶性和热性能。特别地,负载为0.3重量%的GO / MWNTs-COOH的PA66 / GO / MWNTs-COOH纳米复合纤维的拉伸强度达到最大值(979MPa),在所有已报道的文献值中是最高的。而且,纤维是通过容易的方法高效地制造的,在工业应用中具有巨大的潜力。

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