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Characterization of tribological behavior and wear mechanisms of novel oxynitride PVD coatings designed for applications at high temperatures

机译:设计用于高温应用的新型氧氮化物PVD涂层的摩擦学行为和磨损机理的表征

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摘要

This paper focuses on high-temperature tribotests of nanostructured Al-Cr-based oxynitride and oxide coatings. Pin-on-disk tribological tests were performed at temperatures in between room temperature and 800℃, and the results compared to a conventional AlTiN coating. The AlCrN and AlCrON coatings showed good to acceptable wear resistance up to 600℃ while at 800℃, both coating types failed. The new corundum-structured (Al,Cr)_2O_3 oxide showed excellent wear performance up to 800℃. Imaging and chemical analysis of the high-temperature wear tracks allowed for explaining the differences in the wear mechanisms. The ability of a coating to resist oxidation and to delay substrate oxidation, together with an excellent abrasional wear resistance, were identified as the major factors influencing wear rates under severe high-temperature conditions.
机译:本文重点研究纳米结构的Al-Cr基氮氧化物和氧化物涂层的高温摩擦试验。在室温至800℃之间的温度下进行了销盘摩擦测试,并将结果与​​常规AlTiN涂层进行了比较。 AlCrN和AlCrON涂层在高达600℃时表现出良好的耐磨性能,而在800℃时,两种涂层均失效。新的刚玉结构的(Al,Cr)_2O_3氧化物在800℃以下具有优异的耐磨性能。高温磨损痕迹的成像和化学分析可以解释磨损机理的差异。涂层抗氧化和延迟基材氧化的能力以及出色的耐磨性被认为是影响严苛高温条件下磨损率的主要因素。

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