Ultralow Boundary Lubrication Friction by Three-Way Synergistic Interactions among Ionic Liquid, Friction Modifier, and Dispersant

分散剂 边界润滑 材料科学 润滑 离子液体 复合材料 摩擦改进剂 边界(拓扑) 摩擦学 化学工程 纳米技术 润滑油 色散(光学) 有机化学 催化作用 光学 数学分析 物理 化学 数学 工程类
作者
Weimin Li,Chanaka Kumara,Huimin Luo,Harry M. Meyer,Xin He,Dien Ngo,Seong H. Kim,Jun Qu
出处
期刊:ACS Applied Materials & Interfaces [American Chemical Society]
卷期号:12 (14): 17077-17090 被引量:56
标识
DOI:10.1021/acsami.0c00980
摘要

Interactions among antiwear additives (AWs), friction modifiers (FMs), and dispersant in a lubricating oil are critical for tribological performance. This study investigates compatibilities of three oil-soluble ionic liquids (ILs, candidate AWs) with an FM, molybdenum dithiocarbamate (MoDTC), and a dispersant, polyisobutene succinimide (PIBSI) under boundary lubrication. Either synergistic or antagonistic effects were observed depending on the IL's chemistry. Adding an aprotic phosphonium-alkylphosphate or phosphonium-alkylphosphinate IL into the oil containing MoDTC and PIBSI had detrimental impact on the friction and wear behavior. PIBSI was found to preferably interact/react with the aprotic IL to lose its ability of suspending MoDTC and to partially consume or even deplete the IL. In contrast, a protic ammonium-alkylphosphate IL seemed to be able to coexist with PIBSI and work synergistically with MoDTC, yielding a sustainable, ultralow boundary friction. A three-stage tribochemical process is proposed to explain how this IL + MoDTC pair interacts with the contact surface to form a chemically reacted, wear-protective tribofilm supporting a physically adsorbed, friction-reducing film on top. This study provides fundamental insights of the compatibilities among three common lubricant components, antiwear, friction modifier, and dispersant, which can be used to guide future lubricant development.
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