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Impact-resistant carbon nanotube woven films: a molecular dynamics study

机译:抗冲击碳纳米管编织的电影:一个分子动力学研究

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摘要

Fiber-based fabrics have great potential in impacting protection. Here, we propose a novel nanostructure, wherein single-walled CNTs (SWCNTs) were employed to weave plain 2D films. The in-plane mechanical properties and impacting properties of SWCNT woven films (SWFs) were investigated via fully atomic molecular dynamics (MD) simulation. It was found that their fracture strength and Young's modulus present obvious anisotropy, depending on the loading direction. When the loading is along the CNT axis, the mechanical performances are the best. From the impacting test, we found that this SWF synchronously possesses high impacting strength and a percentage of absorbed energy. This is mainly a result of high intrinsic strength, excellent flexibility and radial deformation capability of CNTs. In addition, it was observed that the high-speed impact of projectile can lead to the intricate entanglements of CNTs, which also could dissipate some energy by friction between the CNTs. This study provides an in-depth understanding on the mechanical properties of SWFs and broadens the applications of CNT-based nanomaterials.
机译:基于光纤织物有很大的潜力影响的保护。纳米结构,单壁碳纳米管(SWCNTs)是用来编织纯2 d电影。面内力学性能和影响SWCNT编织电影(主权财富基金)的属性通过全原子分子动力学研究(MD)模拟。强度和杨氏模量出现明显各向异性,这取决于加载方向。沿着问轴加载时,机械性能是最好的。影响测试,我们发现这SWF同步具有影响强度高和被吸收的能量的比例。主要是由于内在强度高,出色的灵活性和径向变形碳纳米管的能力。的高速弹丸会造成的影响碳纳米管的错综复杂的纠葛,还可以通过摩擦能量消散在碳纳米管之间。理解的机械性能主权财富基金、扩大CNT-based的应用纳米材料。

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