论文标题

通过拉伸期间,通过原位结构研究了解碳纳米管纤维中的合作负荷

Understanding cooperative loading in carbon nanotube fibres through in-situ structural studies during stretching

论文作者

Fernández-Toribio, J. C., Mikhalchan, A., Santos, C., Ridruejo, A., Vilatela, J. J.

论文摘要

碳纳米管(CNT)纤维被牢固地确定为一种新的高性能纤维,但其拉伸机械性能仍然是组成CNT的相对较小的部分。清晰的结构 - 核关系关系和准确的机械模型正在迫切要求弥合这一差距。在这项工作中,我们通过在拉伸变形过程中进行原位宽和小角度X射线散射和拉曼光谱,分析CNT纤维中CNT纤维中的结构演化和分子应力转移。结果表明,CNT纤维可以准确地描述为捆绑网络,根据Weibull分布后材料的初始方向分布函数逐渐滑动。该模型将CNT比对和合作负载程度的影响分解,这对于以不同的DART比率产生的纤维证明了。它还有助于解释直接旋转方法产生的CNT纤维的异常高的韧性(断裂能),这是结构材料中抗冲击力的关键特性。

Carbon nanotube (CNT) fibres are firmly established as a new high-performance fibre, but their tensile mechanical properties remain a relatively small fraction of those of the constituent CNTs. Clear structure-property relations and accurate mechanical models are pressing requirements to bridge this gap. In this work we analyse the structural evolution and molecular stress transfer in CNT fibres by performing in-situ synchrotron wide- and small-angle X-ray scattering and Raman spectroscopy during tensile deformation. The results show that CNT fibres can be accurately described as network of bundles that slide progressively according to the initial orientation distribution function of the material following a Weibull distribution. This model decouples the effects of CNT alignment and degree of cooperative loading, as demonstrated for fibres produced at different draw ratios. It also helps explain the unusually high toughness (fracture energy) of CNT fibres produced by the direct spinning method, a key property for impact resistance in structural materials, for example.

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