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Tribochemical approach toward mechanism for synergism of lubricant additives on antiwear and friction reducing properties

机译:润滑剂添加剂协同作用机理抗磨和摩擦降低性能的方法

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The synergism and antagonism of additives on tribological properties is an important issue for lubricant formulations. In this study, combination effects of anti-wear additives, detergents, and dispersants were evaluated by a block-on-ring type tribometer under the boundary lubrication conditions. X-ray photoelectron spectroscopy (XPS) and time-of-flight secondary ion mass spectroscopy (TOF-SIMS) were employed to study the chemical structure of the boundary film formed on the rubbing surface. The correlation between tribological properties and chemical composition on the worn surface was investigated. Zinc dialkyldithiophosphates (ZnDTP) slightly reduced wear under these conditions. An over-based calcium sulfonate (Ca-Sul) reduced wear and friction remarkably, whereas alkylsuccinimdes (Suc-I) promoted wear. Metal oxides derived from the corresponding additives were found on the wear track lubricated with ZnDTP or Ca-Sul. On the other hand, only iron oxides were detected on the surface lubricated with Suc-I. Combination of Suc-I with ZnDTP or Suc-I with Ca-Sul changes tribological properties and surface contents. Taking the results into account, a classification of additives as "boundary film precursor" or "film formation controller" was proposed.
机译:对摩擦学性质的添加剂的协同作用和对抗是润滑剂配方的重要问题。在该研究中,通过在边界润滑条件下通过嵌入环型摩擦计评估抗磨损添加剂,洗涤剂和分散剂的组合效应。采用X射线光电子能谱(XPS)和飞行时间二次离子质谱(TOF-SIMS)研究在摩擦表面上形成的边界膜的化学结构。研究了磨损表面上的摩擦学性质和化学组成之间的相关性。锌二烷基磷酸盐(ZnDTP)在这些条件下略微减少。一种过基磺酸钙(Ca-Sul)显着降低耐磨性和摩擦力,而烷基琥珀酸(Suc-I)促进磨损。在用ZnDTP或Ca-SUL润滑的磨损轨道上发现衍生自相应添加剂的金属氧化物。另一方面,在用SuC-1润滑的表面上仅检测氧化铁。 Suc-I与ZnDTP或SUC-I的组合,CA-SUL改变了摩擦性质和表面内容物。考虑到结果,提出了添加剂的分类,作为“边界膜前体”或“成膜控制器”。

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