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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Self-lubrication mechanism via the in situ formed lubricious oxide tribofilm
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Self-lubrication mechanism via the in situ formed lubricious oxide tribofilm

机译:通过原位形成的氧化性氧化膜形成的自润滑机制

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In situ formation of tribofilms is indispensable to reduce the wear volume and friction coefficient in dry. These tribofilms must be robust even in working at high normal pressure and sliding velocity between work materials and tools. Although TIN and TiC ceramic coating films are frequently utilized as a protective coating for dies and cutting tools, they often suffer from severe, adhesive wearing in dry forming and machining. Chlorine ion implantation assists lubricious oxide film to be in situ formed during wearing. At the presence of chlorine atoms in the inside of TiN or TiC films, in situ formation of lubricous intermediate titanium oxides with TiO and Ti{sub}nO{sub}(2n-1) is sustained to preserve low frictional and wearing state. The fundamental process of this self-lubrication mechanism on the tribofilms, is discussed together with microscopic analysis and observation of worn surface and wear debris. The self-lubrication process works well in dry machining in order to reduce the flank wear of cutting tools even in the higher cutting speed range up to 500m/min.
机译:摩擦膜的原位形成对于减少干燥过程中的磨损量和摩擦系数是必不可少的。这些摩擦膜即使在较高的常压下以及在工作材料和工具之间的滑动速度下也必须坚固。尽管TIN和TiC陶瓷涂膜经常用作模具和切削工具的保护涂层,但它们在干式成型和机械加工中经常会遭受严重的粘合剂磨损。氯离子注入有助于在佩戴过程中原位形成润滑性氧化膜。在TiN或TiC膜内部存在氯原子时,与TiO和Ti {sub} nO {sub}(2n-1)的润滑中间氧化钛原位形成得以维持,以保持低摩擦和磨损状态。讨论了在摩擦膜上这种自润滑机制的基本过程,并通过显微镜分析和观察了磨损的表面和磨损碎片进行了讨论。自润滑过程在干式加工中效果很好,即使在高达500m / min的更高切削速度范围内,也能减少切削刀具的侧面磨损。

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