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The revolutionary creation of new advanced materials - Carbon nanotube composites

机译:新型先进材料的革命性创造-碳纳米管复合材料

摘要

Since the discovery of carbon nanotubes at the beginning of the last decade, extensive research related to the nanotubes in the fields of chemistry, physics, materials science and engineering, and electrical and electronic engineering has been found increasingly. The nanotubes, having an extreme small physical size (diameter ≈ 1 nm) and many unique mechanical and electrical properties depending on its hexagonal lattice arrangement and chiral vector have been appreciated as ideal fibres for nanocomposite structures. It has been reported that the nanotubes own a remarkable mechanical properties with theoretical Young's modulus and tensile strength as high as 1TPa and 200GPa, respectively. Since the nanotubes are highly chemical insert and able to sustain a high strain (10-30%) without breakage, it could be foreseen that nanotube-related structures could be designed for nanoinstrument to create ultra-small electronic circuits and used as strong, light and high toughness fibres for nanocomposite structures. In this paper, recent researches and applications on carbon nanotubes and nanotube composites are reviewed. The interfacial bonding properties, mechanical performance and reliability of nanotube/polymer composites will be discussed.
机译:自从上个十年初发现碳纳米管以来,在化学,物理学,材料科学与工程以及电气和电子工程领域中,与纳米管相关的广泛研究日益增多。纳米管具有极小的物理尺寸(直径≈1 nm),并具有许多独特的机械和电学性能,这取决于其六方晶格排列和手性载体,已被公认为是纳米复合结构的理想纤维。据报道,纳米管具有显着的机械性能,其理论杨氏模量和拉伸强度分别高达1TPa和200GPa。由于纳米管是高度化学插入物,并且能够承受高应变(10-30%)而不会断裂,因此可以预见,可以将纳米管相关结构设计用于纳米仪器,以制造超小型电子电路,并用作坚固,轻便的结构。以及用于纳米复合结构的高韧性纤维。本文综述了碳纳米管和碳纳米管复合材料的最新研究和应用。将讨论纳米管/聚合物复合材料的界面粘合性能,机械性能和可靠性。

著录项

  • 作者

    Lau AKT; Hui D;

  • 作者单位
  • 年度 2002
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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