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Boundary Lubrication Mechanisms for High-Performance Friction Modifiers

机译:高性能摩擦修饰器的边界润滑机制

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We recently reported a new molecular heterocyclic friction modifier (FM) that exhibits excellent friction and wear reduction in the boundary lubrication regime. This paper explores the mechanisms by which friction reduction occurs with heterocyclic alkyl cyclen FM molecules. We find that these chelating molecules adsorb onto (oxidized) steel surfaces far more tenaciously than conventional FMs such as simple alkylamines. Molecular dynamics simulations argue that the surface coverage of our heterocyclic FM molecules remains close to 100% even at 200 degrees C. This thermal stability allows the FMs to firmly anchor to the surface, allowing the hydrocarbon chains of the molecules to interact and trap base oil lubricant molecules. This results in thicker boundary film thickness compared with conventional FMs, as shown by optical interferometry measurements.
机译:我们最近报告了一种新的分子杂环摩擦改性剂(FM),其在边界润滑制度中表现出优异的摩擦和磨损。 本文探讨了杂环烷基环CM分子发生摩擦减少的机制。 我们发现这些螯合分子吸附到(氧化)钢表面上比常规FMS(如简单的烷基胺)更胆怯地吸附到(氧化)钢表面上。 分子动力学模拟认为,即使在200摄氏度下,我们的杂环FM分子的表面覆盖率仍保持接近100%。该热稳定性允许FMS牢固地锚固到表面,允许分子的烃链相互作用和捕获基础油 润滑剂分子。 这导致与传统FMS相比较厚的边界膜厚度,如光学干涉测量测量所示。

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