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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Role of carbon nanotubes on growth of a nanostructured double-deck tribofilm yielding excellent self-lubrication performance
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Role of carbon nanotubes on growth of a nanostructured double-deck tribofilm yielding excellent self-lubrication performance

机译:碳纳米管对纳米结构双层呋喃甲虫生长产生优异的自润滑性能的作用

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Multi-walled carbon nanotubes (MWCNTs), and MWCNTs/zirconia nanoparticles (nano-ZrO2) hybrids were compounded into a formulated non-asbestos brake material of phenolic binder, respectively. It is demonstrated that even low-loading above nanofillers switching virtually the original brake material to an extremely wear-resistant self-lubricating material. More interestingly, the addition of MWCNTs/nano-ZrO2 hybrids leads to formation of a double-deck tribofilm yielding extraordinarily low friction and wear. First-principles calculations demonstrate that O atoms from air ambience break carbon-carbon backbones of CNTs, facilitating them to convert into graphitic nanograins. Our work provides direct evidence that graphitic nanograins and nano-ZrO2 are digested within the beneath layer of the tribofilm, whilst chelation of polymer chains radicals with nano-ZrO2 expedites formation of a carbon-based lubricous top layer. The present work puts forward a new strategy for endowing numerous mechanical motion systems with a robust self-lubrication characteristic via tuning tribofilms' nanostructures. (C) 2020 Elsevier Ltd. All rights reserved.
机译:将多壁碳纳米管(MWCNT)和MWCNT /氧化锆纳米颗粒(纳米-ZRO2)杂交物分别混合到酚粘合剂的配制的非石棉制动材料中。结果表明,即使在纳米填充物上方的低负载几乎将原始制动材料切换到极其耐磨的自润滑材料。更有趣的是,添加MWCNT /纳米ZrO2杂交种导致双甲板呋喃木材的形成产生非常低的摩擦和磨损。第一原理计算表明,来自空气氛围的O原子会破坏CNT的碳圆骨,促进它们转化为石墨纳米甲基。我们的作品提供了直接证据,即石墨纳米格拉诺和纳米ZrO2在呋喃甲虫的下层中消化,而具有纳米ZrO2的聚合物链的螯合螯合螯合物,加强了碳基润滑顶层的形成。本工作提出了一种通过调整呋喃虫纳米结构具有稳健的自润滑特性的赋予许多机械运动系统的新策略。 (c)2020 elestvier有限公司保留所有权利。

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