首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Sliding wear of nanocrystalline Nb-Ag at elevated temperatures: Evolution of subsurface microstructure and its correlation with wear performance
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Sliding wear of nanocrystalline Nb-Ag at elevated temperatures: Evolution of subsurface microstructure and its correlation with wear performance

机译:升高温度下纳米晶体NB-AG的滑动磨损:地下微观结构的演化及其与磨损性能的相关性

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摘要

An in-depth understanding of the formation of subsurface microstructure and its correlation with wear performance is a prerequisite towards controlling friction and wear at high temperatures, but such information for nanostructured binary immiscible alloys is rather limited. Here, we systematically investigated the sliding wear of nanocrystalline Nb90Ag10 two-phase alloy against Inconel alloy 600 disks at temperatures from 25 to 500 degrees C. Detailed characterizations on the subsurface layers show that their microstructures have a strong correlation with the corresponding wear performance. At 25 and 200 degrees C, no oxidation layer formed. The metallic sliding contacts result in higher coefficients of friction (CoF) and wear rates, and the formation of nanolayered structure near the sliding surface. M 350 degrees C, the tribo-oxidation reaction occurred only within the counterface material and a mechanical mixing layer was formed below the sliding surface of the pin. The third-body wear yielded pronounced reduction in CoF but the highest wear rate. At 500 degrees C, the tribo-oxidation occurred within both the pin and the counterface material. A protective glaze layer formed on the top of the pin and thus leads to the lowest wear rate.
机译:深入了解地下微观结构的形成及其与磨损性能的相关性是控制高温下摩擦和磨损的先决条件,但是纳米结构二元加热合金的这种信息相当有限。这里,我们系统地研究了纳米晶NB90AG10两相合金的滑动磨损在25至500摄氏度的温度下,在温度下,在25至500℃的温度下。对地下层的详细表征表明其微观结构与相应的磨损性能具有很强的相关性。在25和200摄氏度下,没有形成氧化层。金属滑动触点导致更高系数的摩擦(COF)和磨损率,以及在滑动表面附近的纳米层结构的形成。 M 350℃,摩擦氧化反应仅发生在配对材料内,并且在销的滑动表面下方形成机械混合层。三体磨损在COF中产生显着减少,但磨损最高。在500摄氏度下,磁带氧化在销和配件材料中发生。形成在销顶部的保护釉层,从而导致最低磨损率。

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