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Investigation of the Effect of a Diamine-Based Friction Modifier on Micropitting and the Properties of Tribofilms in Rolling-Sliding Contacts

机译:二胺基摩擦改性剂对微孔化及滚动滑动触头摩擦膜性能影响的研究

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摘要

The effect of N-Tallow-1,3-DiaminoPropane (TDP) on friction, rolling wear and micropitting has been investigated with the ultimate objective of developing lubricants with no or minimal environmental impact. A Mini Traction Machine (MTM-SLIM) has been utilised in order to generate tribofilms and observe the effect of TDP on anti-wear tribofilm formation and friction. Micropitting was induced on the surface of specimens using a MicroPitting Rig (MPR). The X-ray Photoelectron Spectroscopy (XPS) surface analytical technique has been employed to investigate the effect of TDP on the chemical composition of the tribofilm while Atomic Force Microscopy (AFM) was used to generate high resolution topographical images of the tribofilms formed on the MTM discs. Experimental and analytical results showed that TDP delays the Zinc DialkylDithioPhosphate (ZDDP) anti-wear tribofilm formation. TDP in combination with ZDDP induces a thinner and smoother anti-wear tribofilm with a modified chemical structure composed of mixed Fe/Zn (poly)phosphates. The sulphide contribution to the tribofilm and oxygen-to-phosphorous atomic concentration ratio are greater in the bulk of the tribofilm derived from a combination of TDP and ZDDP compared to a tribofilm derived from ZDDP alone. Surface analysis showed that utilising TDP effectively mitigates micropitting wear in the test conditions used in this study. Reduction of micropitting, relevant to rolling bearing applications, can be attributed to the improved running-in procedure, reduced friction, formation of a smoother tribofilm and modification of the tribofilm composition induced by TDP.
机译:研究了N-牛油-1,3-二氨基丙烷(TDP)对摩擦,滚动磨损和微孔蚀的影响,其最终目的是开发对环境没有影响或对环境的影响最小的润滑剂。为了产生摩擦膜并观察TDP对抗磨摩擦膜形成和摩擦的影响,已经使用了微型牵引机(MTM-SLIM)。使用MicroPitting Rig(MPR)在样品表面上引起微点蚀。 X射线光电子能谱(XPS)表面分析技术已用于研究TDP对摩擦膜化学成分的影响,而原子力显微镜(AFM)用于生成在MTM上形成的摩擦膜的高分辨率地形图光盘。实验和分析结果表明,TDP延迟了二烷基二硫代磷酸锌(ZDDP)抗磨摩擦膜的形成。 TDP与ZDDP结合使用,可产生更薄,更光滑的耐磨摩擦膜,其化学结构由混合的Fe / Zn(聚)磷酸酯组成。与单独衍生自ZDDP的摩擦膜相比,在TDP和ZDDP组合衍生的摩擦膜的大部分中,硫化物对摩擦膜的贡献和氧磷原子浓度比更大。表面分析表明,在本研究使用的测试条件下,利用TDP有效缓解了微点蚀磨损。与滚动轴承应用相关的微点蚀的减少可归因于磨合过程的改进,摩擦的减少,摩擦膜的形成和TDP诱导的摩擦膜组成的改变。

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