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Improvement of mechanical and tribological performances of carbon nanostructure films by cryogenic treatment

机译:低温处理改善碳纳米纳米膜的机械和摩擦学性能

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摘要

The work presents data on mechanical properties, tribological performances and microstructure changes of hydrogenated amorphous, fullerene-like and graphite-like carbon films (a-C:H, FL-C:H and GL-C:H) after post cryogenic treatment. It is shown that post cryogenic treatment more effectively improves the mechanical and tribological performances of carbon nanostructure films as compared to the a-C:H films. By the combination of Raman and TEM studies, the performance improvement can be attributed to the introduction and enhancement of defects such as pentatomic and heptatomic carbon rings in their carbon structure matrices, which facilitate cross-linking between the graphitic basal planes via sp(3)-hybridized carbons. The results provide an important reference for achieving solid lubrication under the cryogenic environment that is both reliable and presents longevity.
机译:本研究提供了氢化非晶、类富勒烯和类石墨碳膜(a-C:H、FL-C:H和GL-C:H)在后低温处理后的机械性能、摩擦学性能和微观结构变化的数据。结果表明,与a-C:H薄膜相比,后低温处理更有效地改善了碳纳米结构薄膜的力学和摩擦学性能。通过拉曼光谱和TEM研究的结合,性能的改善可归因于在其碳结构基质中引入和增强缺陷,例如五原子和七原子碳环,这有助于通过sp(3)-杂化碳在石墨基面之间交联。研究结果为在低温环境下实现既可靠又长寿的固体润滑提供了重要参考。

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