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Industrial Gear Oils: Tribological Performance and Subsurface Changes

机译:工业齿轮油:摩擦学性能和地下变化

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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 A mu m), whilst with Oils B and C it was largely limited to 2-3 A mu m 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.
机译:本研究研究了三个齿轮油(油脂A,B和C)的摩擦学性能,相对于表面和微观结构变化。油A含有二硫代磷酸摩擦改性剂,油B含有胺钼酸盐,与二烷基二硫代磷酸锌二硫代磷酸锌添加剂联合,而油C含有膦酸盐和商用齿轮油包装。在球化AISI 52100钢盘上的硬化AISI 52100钢球的滑动测试之后,使用拉曼和能量分散X射线光谱化学研究磨损的表面。每种油的摩擦学性能不同,同样形成了呋喃酚的性质。经过5分钟的滑动试验后,测量磨损表面的硬度深度曲线;通过将扫描电子显微镜与聚焦离子束制剂和透射电子反向散射衍射(T-EBSD)技术相结合,检查横截面微观结构。用油A,表面硬度增加(比未磨损的表面大33%),而用油B和C,表面附近的平均硬度比未磨损的表面的平均硬度大。使用油A的横截面微结构也不同于油B和C,这非常相似。结果表明,通过油状物,铁氧体晶粒的细化将深入到材料中(& 10 a mu m),而用油b和c大部分限制在表面以下2-3 a mu m。结论是润滑剂配方及其相关的呋喃酚影响了地下层中变形程度,从而影响了磨损性能。

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