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工业齿轮油:摩擦学性能与亚表面变化

Industrial Gear Oils: Tribological Performance and Subsurface Changes.

作者信息

Adebogun Aduragbemi, Hudson Robert, Breakspear Angela, Warrens Chris, Gholinia Ali, Matthews Allan, Withers Philip

机构信息

1International Centre for Advanced Materials (ICAM, Manchester Hub), The University of Manchester, Manchester, M13 9PL UK.

2School of Materials, The University of Manchester, Manchester, M13 9PL UK.

出版信息

Tribol Lett. 2018;66(2):65. doi: 10.1007/s11249-018-1013-2. Epub 2018 Apr 10.

Abstract

This study examined the tribological performance of three gear oils (Oils A, B and C), in relation to surface and microstructural changes. Oil A contains molybdenum dithiophosphate friction modifier, Oil B contains amine molybdate combined with zinc dialkyl dithiophosphate antiwear additive, while Oil C contains phosphonate and a commercial gear oil package. Following sliding tests of a hardened AISI 52100 steel ball on a spheroidized AISI 52100 steel disc, the worn surfaces were chemically studied using Raman and energy-dispersive X-ray spectroscopy. The tribological performance for each oil was different, likewise the nature of the tribofilm formed. After a 5 min sliding test, the hardness-depth profile of the worn surfaces was measured; also the cross-sectional microstructure was examined using scanning electron microscopy combined with focused ion beam preparation and transmission electron backscattered diffraction (t-EBSD) techniques. With Oil A, there was a relatively small increase in surface hardness (33% greater than that of the unworn surface), whereas with Oils B and C, the average hardness near the surface was 100% greater than that of the unworn surface. The cross-sectional microstructure using Oil A also differed from Oils B and C, which were quite similar. The result shows that with Oil A refinement of the ferrite grains spreads deeper into the material (> 10 µm), whilst with Oils B and C it was largely limited to 2-3 µm below the surface. It is concluded that the lubricant formulations and their associated tribofilms influenced the extent of deformation in the subsurface layers and consequently influenced the wear performance.

摘要

本研究考察了三种齿轮油(A油、B油和C油)在表面和微观结构变化方面的摩擦学性能。A油含有二硫代磷酸钼摩擦改进剂,B油含有钼胺与二烷基二硫代磷酸锌抗磨添加剂的组合,而C油含有膦酸盐和一种商用齿轮油配方。在经过硬化处理的AISI 52100钢球在球化处理的AISI 52100钢盘上进行滑动试验后,使用拉曼光谱和能量色散X射线光谱对磨损表面进行了化学研究。每种油的摩擦学性能不同,形成的摩擦膜的性质也不同。在进行5分钟的滑动试验后,测量了磨损表面的硬度-深度分布;还使用扫描电子显微镜结合聚焦离子束制备和透射电子背散射衍射(t-EBSD)技术检查了横截面微观结构。使用A油时,表面硬度有相对较小的增加(比未磨损表面高33%),而使用B油和C油时,表面附近的平均硬度比未磨损表面高100%。使用A油时的横截面微观结构也与B油和C油不同,后两者非常相似。结果表明,使用A油时,铁素体晶粒的细化深入材料内部(>10μm),而使用B油和C油时,主要限于表面以下2-3μm。得出的结论是,润滑剂配方及其相关的摩擦膜影响了次表层的变形程度,从而影响了磨损性能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ba4d/6438653/871fb90299b5/11249_2018_1013_Fig1_HTML.jpg

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