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Transparent PMMA-based nanocomposite using electrospun graphene-incorporated PA-6 nanofibers as the reinforcement

机译:透明的基于PMMA的纳米复合材料,使用掺有电纺石墨烯的PA-6纳米纤维作为增强材料

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摘要

This paper deals with development of a novel poly(methyl methacrylate) (PMMA) based transparent nanocomposite made from using electrospun graphene-incorporated-Nylon 6 (Gr/PA-6) nanofibers as the reinforcement, in which both the mechanical and optical properties of the developed Gr/PA-6/PMMA nanocomposite are paid particular attention. By introducing the concept of electrospun PA-6 nanofibers as the dispersing carrier for graphene nanosheets and by employing a facile self-blending co-electrospin-ning approach for homogeneously hybridizing nanocomposite nanofibers of Gr/PA-6 with PMMA fibers, aggregation issue of the involved nanofillers (i.e., the Gr nanosheets and the Gr-incorporated PA-6 nanofibers) within the PMMA matrix could be effectively addressed. Visible light transmittance and tensile mechanical properties of the hot-pressed Gr/PA-6/PMMA nanocomposite were examined in relation to the loading fractions of the Gr nanosheets in the nanocomposite. It was demonstrated that a significant enhancement in tensile mechanical properties of the Gr/PA-6/PMMA nanocomposite was accomplished at a Gr loading of merely 0.01 wt%; that is, a nearly 56%, 113% respective improvement of tensile strength, Young's modulus, and noticeably above 250% increase of fracture toughness were achieved, while the transmittance of the nanocomposite was maintained above 70% (in other words, less than 10% loss in transparency in comparison with neat PMMA) in the visible wavelength range of 400-800 nm.
机译:本文研究了一种新型的基于聚(甲基丙烯酸甲酯)(PMMA)的透明纳米复合材料的开发,该复合材料使用掺有电纺石墨烯的尼龙6(Gr / PA-6)纳米纤维作为增强材料制成,该复合材料既具有机械性能又具有光学性能。开发的Gr / PA-6 / PMMA纳米复合材料受到特别关注。通过引入电纺PA-6纳米纤维作为石墨烯纳米片的分散载体的概念,并采用一种简便的自混合共电纺丝方法,将Gr / PA-6纳米复合纳米纤维与PMMA纤维均匀混合,可以有效解决PMMA基质中涉及的纳米填料(即Gr纳米片和Gr掺入的PA-6纳米纤维)。考察了热压的Gr / PA-6 / PMMA纳米复合材料的可见光透射率和拉伸机械性能,并与纳米复合材料中Gr纳米片的负载率相关。结果表明,仅以0.01 wt%的Gr含量就可以实现Gr / PA-6 / PMMA纳米复合材料的拉伸机械性能的显着提高。也就是说,实现了抗拉强度,杨氏模量分别提高了近56%,113%,并且断裂韧性明显提高了250%以上,而纳米复合材料的透射率保持在70%以上(换句话说,小于10在400-800 nm的可见光波长范围内,与纯PMMA相比,透明性降低了%。

著录项

  • 来源
    《Composites Science and Technology》 |2013年第12期|134-141|共8页
  • 作者单位

    State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, China, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China;

    State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, China, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China;

    State Key Laboratory for Modification of Chemical Fibers and Polymer Materials, Donghua University, Shanghai 201620, China, College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, China,College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, 2999 North Renmin Road, Shanghai 201620, China;

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

    A. Nanocomposites; A. Functional composites; B. Mechanical properties; E. Electro-spinning; Graphene;

    机译:A.纳米复合材料;A.功能复合材料;机械性能;E.电纺;石墨烯;

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