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Coiled carbon nanotubes: Synthesis and their potential applications in advanced composite structures

机译:盘绕碳纳米管:合成及其在先进复合结构中的潜在应用

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摘要

Since the discovery of carbon nanotubes, their applications benefit to a wide range of engineering, applied physics and biomaterials areas, because of their superior mechanical and electrical properties. In the advanced composite society, substantial works including the synthesis of different types of nanotubes, manufacturing process of nanotube-related composites, mechanical characterizations of these composites, have been conducted in the past few years. One of the major focuses, has not yet been solved, is on how to ensure a good bonding between straight nanotubes and their surrounding matrix, and also the integrity of the nanotubes' structures, in their atomic scale level after being bonded with the matrix. Physical nanotube pullout and push in tests can be used to determine the interfacial bonding properties of the nanotube/polymer composites. However, due to their size constraint, it is impossible to precisely conduct such tests, based on current testing technology. Although molecular dynamics (MD) simulations are another alternative to roughly estimate the bonding behaviour of the composites, the results are highly dependent on the basic assumptions applied to models. Recently, the development of coiled carbon nanotubes opens a new alternative to reinforce the traditional composites. The coiled configuration of the nanotubes can enhance the fracture toughness as well as mechanical strength of the composites even there is no direct chemical bonding between the nanotubes and matrix. Their coiled shape induces mechanical interlocking when the composites are subjected to loading. In this paper, a critical review on the synthesis of the coiled nanotubes and their applications in advanced composites is given.
机译:自从发现碳纳米管以来,由于其优异的机械和电气性能,它们的应用受益于广泛的工程,应用物理和生物材料领域。在先进的复合材料社会中,过去几年进行了大量工作,包括合成不同类型的纳米管,纳米管相关复合材料的制造工艺,这些复合材料的机械特性。尚未解决的主要焦点之一是如何确保在与基体键合后,在其原子尺度上,直纳米管与其周围的基体之间的良好键合以及纳米管结构的完整性。物理纳米管拉出和推入测试可用于确定纳米管/聚合物复合材料的界面粘结性能。但是,由于它们的尺寸限制,不可能基于当前的测试技术精确地进行此类测试。尽管分子动力学(MD)模拟是粗略估计复合材料键合行为的另一种方法,但结果在很大程度上取决于应用于模型的基本假设。最近,盘绕碳纳米管的开发为增强传统复合材料开辟了新的选择。纳米管的盘绕构型可以增强复合材料的断裂韧性以及机械强度,即使在纳米管和基体之间没有直接的化学键合也是如此。当复合材料受到载荷时,它们的盘绕形状会引起机械互锁。本文对卷曲纳米管的合成及其在高级复合材料中的应用进行了严格的综述。

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