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Tribooxidation as a Way to Improve the Wear Resistance of Cutting Tools

机译:摩擦为改善切削工具耐磨性的一种方法

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This paper generalizes the results of our research, which was aimed at the development of adaptive cutting tool coatings for high speed dry cutting, from the inception of the idea to complex multilayer coatings for processing tough metals. Typically, the streams of external energy and matter during high speed cutting are causing damage to the tool materials and to the hard, protective coatings through multiple mechanical and chemical processes including oxidation, however these oxidation processes could be used to improve the tools’ lifetime. The structure and the phase transformations on the wear surface in the nanostructured single layer and nanolaminated multilayer PVD coatings were investigated by a set of electron spectroscopy methods. The dynamics of the secondary phase formation on the various stages of tool life is demonstrated. The obtained results show that the enhancement of non-equilibrium processes during friction leads to a dominating formation of protective triboceramics on a base of sapphire-like, tungsten, and niobium polyvalent oxides with a structure which decisively improves the wear performance. The mechanisms of the formation of non-equilibrium protective oxides at high speed dry cutting and the non-equilibrium thermodynamics approaches for the tribooxidation description are discussed. Polyvalent metals and multilayer coatings provide a wider set of protective oxide nanofilms.
机译:本文概括了我们研究的结果,该研究旨在开发用于高速干切割的自适应切割工具涂层,从想法的初始化到加工坚韧的金属的复杂多层涂层。通常,高速切割期间的外部能量和物质流导致工具材料的损坏和通过包括氧化的多种机械和化学方法造成损坏,并且通过包括氧化的多种机械和化学方法,可以使用这些氧化过程来改善工具的寿命。通过一组电子光谱法研究了纳米结构单层和纳米胺化多层PVD涂层中磨损表面上的结构和相变。对刀具寿命的各个阶段进行二次相形成的动态。所得结果表明,在摩擦期间提高非平衡过程导致在蓝宝石状,钨和铌的碱基上的保护性微扫描器的主导地层形成,其具有果实改善磨损性能的结构。讨论了在高速干切削下形成非平衡保护氧化物的机制和用于摩擦氧化描述的非平衡热力学方法。多价金属和多层涂层提供较宽的保护性氧化物纳米丝。

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