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Nano-epoxy resins containing electrospun carbon nanofibers and the resulting hybrid multi-scale composites

机译:包含电纺碳纳米纤维的纳米环氧树脂及其所得的杂化多尺度复合材料

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摘要

For the first time, electrospun carbon nanofibers (ECNFs, with diameters and lengths of ~200 nm and ~15 μm, respectively) were explored for the preparation of nano-epoxy resins; and the prepared resins were further investigated for the fabrication of hybrid multi-scale composites with woven fabrics of conventional carbon fibers via the technique of vacuum assisted resin transfer molding (VARTM). For comparison, vapor growth carbon nanofibers (VGCNFs) and graphite carbon nanofibers (GCNFs) were also studied for making nano-epoxy resins and hybrid multi-scale composites. Unlike VGCNFs and GCNFs that are prepared by bottom-up methods, ECNFs are produced through a top-down approach; hence, ECNFs are more cost-effective than VGCNFs and GCNFs. The results indicated that the incorporation of a small mass fraction (e.g., 0.1% and 0.3%) of ECNFs into epoxy resin would result in substantial improvements on impact absorption energy, inter-laminar shear strength, and flexural properties for both nano-epoxy resins and hybrid multi-scale composites. In general, the reinforcement effect of ECNFs was similar to that of VGCNFs, while it was higher than that of GCNFs.
机译:首次探索了电纺碳纳米纤维(ECNF,直径和长度分别为〜200 nm和〜15μm)以制备纳米环氧树脂;并进一步研究了制备的树脂,以通过真空辅助树脂传递模塑成型(VARTM)技术制造具有常规碳纤维机织织物的杂化多尺度复合材料。为了进行比较,还研究了气相生长碳纳米纤维(VGCNF)和石墨碳纳米纤维(GCNF)来制备纳米环氧树脂和杂化多尺度复合材料。与通过自下而上的方法制备的VGCNF和GCNF不同,ECNF是通过自上而下的方法生产的。因此,ECNF比VGCNF和GCNF更具成本效益。结果表明,在环氧树脂中掺入少量质量分数(例如0.1%和0.3%)的ECNF会大大改善两种纳米环氧树脂的冲击吸收能,层间剪切强度和挠曲性能和混合多尺度复合材料。通常,ECNFs的增强作用与VGCNFs相似,但高于GCNFs。

著录项

  • 来源
    《Composites 》 |2014年第3期| 43-53| 共11页
  • 作者单位

    Department of Chemistry and Applied Biological Sciences, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA;

    The Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, China;

    Department of Chemistry and Applied Biological Sciences, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA;

    Department of Chemistry and Applied Biological Sciences, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA;

    Department of Chemistry and Applied Biological Sciences, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA,The Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, China;

    Department of Chemistry and Applied Biological Sciences, South Dakota School of Mines and Technology, Rapid City, SD 57701, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    A. Polymer-matrix composites (PMCs); A. Carbon fiber; B. Mechanical properties;

    机译:A.聚合物基复合材料(PMC);A.碳纤维;机械性能;

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