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Analyses of the Adsorption Structures of Friction Modifiers by Means of Quantitative Structure-Property Relationship Method and Sum Frequency Generation Spectroscopy

机译:定量结构-性质关系法和和频产生光谱法分析摩擦改性剂的吸附结构

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摘要

Blending an optimum amount of friction modifiers into lubricant is one of the important measures to reduce fuel consumption induced by the frictional loss for automobiles. However, the agents containing metal or phosphorus compounds can cause catalyst poisoning and clogging in the filters of the exhaust gas refining system. Thus, development of metal-free and phosphorus-free agents with a long-term stability under real working condition is highly desirable. In the present work, the friction coefficients on the metal surface in lubricants containing different friction modifiers were investigated by the reciprocating friction test in detail. A statistical method based on the quantitative structure-property relationship (QSPR) analysis has been employed to correlate the chemical nature of additives with their effect on the friction reduction behaviors. An empirical equation relating the molecular structure and its friction reduction efficiency has been proposed as a standard for a good friction modifier. Furthermore, a surface-sensitive vibration spectroscopy, sum frequency generation (SFG) spectroscopy, has been used to analyze the molecular structures of the lubricants adsorbed on the metal surface. The SFG observation suggested that a certain relationship between the adsorption structure and friction reduction effect of these agents.
机译:将最佳量的摩擦改进剂掺入润滑剂中是减少因汽车摩擦损失而引起的燃油消耗的重要措施之一。但是,含有金属或磷化合物的试剂会导致催化剂中毒并在废气精制系统的过滤器中堵塞。因此,非常需要开发在实际工作条件下具有长期稳定性的无金属和无磷的试剂。在目前的工作中,通过往复摩擦试验详细研究了含有不同摩擦改进剂的润滑剂在金属表面的摩擦系数。已经采用基于定量结构-性质关系(QSPR)分析的统计方法来将添加剂的化学性质与其对减摩性能的影响相关联。已经提出了与分子结构及其减摩效率相关的经验方程,作为良好的摩擦改进剂的标准。此外,表面敏感性振动光谱法,和频产生(SFG)光谱法已用于分析吸附在金属表面上的润滑剂的分子结构。 SFG的观察表明这些试剂的吸附结构和减摩效果之间存在一定的关系。

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