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A study on mechanism of tribological behavior of carbon nanotubes

机译:碳纳米管的摩擦学行为机制研究

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This paper investigates mechanism of tribological behavior of carbon nanotubes by using universal tribometer-II and molecular dynamics simulations. The experiment results indicate that multi-walled carbon nanotubes film with mixed acid treatment has better surface quality and less impurities but higher friction than pristine carbon nanotubes film. The reason is that mixed acid treatment introduces carboxyl group and more defects which increase dangling bonds of carbon nanotubes. Breaking of dangling bonds increases friction force when sliding and shearing occurs. Molecular dynamics simulation of shearing between silicon surfaces and single-walled carbon nanotube bundles without defect shows low lateral forces because only van der walls force exists between silicon surfaces and carbon nanotubes owing to no dangling bonds. The result is consistent to the conclusion inferred from experiment. Therefore excellent performance is expected when carbon nanotubes treated with little defects are used as lubricant or addictives.
机译:本文通过使用通用摩蒂达计-II和分子动力学模拟来研究碳纳米管的摩擦学行为的机制。实验结果表明,具有混合酸处理的多壁碳纳米管膜具有更好的表面质量和较少的杂质,而是比原始碳纳米管膜更高的摩擦。原因是混合酸处理引入羧基和更多缺陷,其增加碳纳米管的悬空键。在发生滑动和剪切时,悬空粘合的破坏增加了摩擦力。硅表面和单壁碳纳米管束之间的剪切的分子动力学模拟没有缺陷显示出低的横向力,因为由于没有悬挂粘合而在硅表面和碳纳米管之间仅存在范德壁力。结果一致地与实验推断的结论一致。因此,当用很少缺陷处理的碳纳米管用作润滑剂或上瘾者时,预期出色的性能。

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