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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Combined Nano- and Macrotribology Studies of Titania Lubrication Using the Oil-Ionic Liquid Mixtures
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Combined Nano- and Macrotribology Studies of Titania Lubrication Using the Oil-Ionic Liquid Mixtures

机译:使用油离子液体混合物润滑二氧化钛的纳米和宏观摩擦学的综合研究

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摘要

The lubrication of titania surfaces using a series of ionic liquid (IL)-hexadecane mixtures has been probed using nanoscale atomic force microscopy (AFM) and macroscale ball-ondisk tribometer measurements. The IL investigated is trihexyl- (tetradecyl)phosphonium bis(2,4,4-trimethylpentyl)phosphinate, which is miscible with hexadecane in all proportions. At both length scales, the pure IL is a much more effective lubricant than pure hexadecane. At low loads, which are comparable to common industrial applications, the pure IL reduces the friction by 80% compared to pure hexadecane; while the IL-hexadecane mixtures lubricate the titania surface as effectively as the pure IL and wear decreases with increasing IL concentration. At high test loads the adsorbed ion boundary layer is displaced leading to surface contact and high friction, and wear is pronounced for all IL concentrations. Nonetheless, the IL performs better than a traditional zinc-dialkyl-dithophosphate (ZDDP) antiwear additive at the same concentration.
机译:使用纳米级原子力显微镜(AFM)和大型球形磁盘摩擦计测量,已经探究了使用一系列离子液体(IL)-十六烷混合物对二氧化钛表面的润滑。研究的IL是双(2,4,4-三甲基戊基)次膦酸酯的三己基-(十四烷基)phosph,可与十六烷以所有比例混溶。在两种长度范围内,纯IL均比纯十六烷有效得多。在低负载下,可以与普通工业应用相媲美,纯IL与纯十六烷相比可将摩擦降低80%;而IL-十六烷混合物与二氧化钛一样有效地润滑二氧化钛表面,磨损随着IL浓度的增加而降低。在高测试负载下,吸附的离子边界层发生位移,导致表面接触和高摩擦,并且在所有IL浓度下磨损都很明显。尽管如此,在相同浓度下,IL的性能优于传统的二烷基二磷酸锌(ZDDP)抗磨添加剂。

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