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Carbon nanotube reservoirs for self-healing materials

机译:自修复材料的碳纳米管储存器

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摘要

A novel nanoreservoir made of carbon nanotubes (CNTs) is proposed for realizing tougher and automated self-healing materials. The advantages of the approach are that CNTs have the potential to play the role of reinforcing elements prior to and after sealing a crack and that the number of voids is reduced after the material and the CNTs themselves are healed. The focus of this paper is on investigating the feasibility of using CNTs as a nanoreservoir by analyzing the dynamics of a fluid flowing out of a ruptured single-walled CNT (SWNT), where the fluid resembles an organic healing agent. With this in mind the escaping mechanism of organic molecules stored inside a cracked SWNT was investigated through a molecular dynamics study. The study shows that, when a SWNT wall suffers the formation of a crack, a certain amount of organic molecules, stored inside the SWNT, escape into space in a few picoseconds. This phenomenon is found to depend on the temperature and on the size of the cracks. The results of this study indicate that CNTs have the potential to be successfully used to realize the next generation of stronger, lighter and self-healing materials.
机译:提出了一种由碳纳米管(CNTs)制成的新型纳米储库,用于实现更坚韧和自动化的自修复材料。该方法的优点在于,在密封裂缝之前和之后,碳纳米管具有发挥补强元素的作用,并且在材料和碳纳米管自身修复后,空隙的数量减少了。本文的重点是通过分析从破裂的单壁CNT(SWNT)流出的流体的动力学来研究将CNTs用作纳米储层的可行性,该流体类似于有机愈合剂。考虑到这一点,通过分子动力学研究了裂化的SWNT中有机分子逃逸的机理。研究表明,当SWNT壁出现裂缝时,SWNT内部存储的一定数量的有机分子会在几皮秒内逃逸到太空中。发现这种现象取决于温度和裂纹的尺寸。这项研究的结果表明,碳纳米管具有成功用于实现下一代更强,更轻和自愈材料的潜力。

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