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Tribochemistry of Boron-Containing Lubricant Additives on Ferrous Surfaces for Improved Internal Combustion Engine Performance

机译:黑色表面的含硼润滑油添加剂的摩擦化学以提高内燃机的性能

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摘要

Global concerns for the environmental impact of pollutants from automotive sources require considerable reduction of phosphorus and sulphur-based antiwear additives in lubricating oils. One of such additives used as antiwear/extreme pressure (EP) additives in lubricating oils is Zinc Dialkyl DithioPhosphate (ZDDP). Potential replacements for ZDDP are antiwear/EP boron-based additives. In this study, a comprehensive evaluation of the tribological properties of model oils of different types of borate antiwear additives are considered for comparison to ZDDP on steel surfaces in tribo-contact. udIn this thesis, tribological experiments in pure sliding under boundary lubrication conditions were performed using pin-on-reciprocating plate test rig with variations of: additive concentrations in the oil, bulk-oil temperature, sliding process, dissolved, andudfree water contamination tests. The coefficient of friction response and antiwear performance of tribofilms were evaluated. Bulk oil analysis of the model oils were performed to evaluate their response to different thermal and oxidative conditions in comparison to ZDDP. In addition, chemical characterization of key crystalline boron compounds was done. The physical and chemical aspects of tribofilms generated during tribological tests were evaluated using surface analysis techniques such as: Optical white-light interferometry, Atomic Force Microscopy (AFM), Focused Ion Beam-Scanning Electron Microscopy (FIB-SEM), Raman Spectroscopy, X-ray Photoelectron Spectroscopy (XPS) and Nanoindentation.udOne of the key findings of this study is that tribofilms from hydrolytically unstable borates additives gave poor antiwear performance compared to ZDDP and other synthetic borate additives with better resistance to hydrolysis. This study has revealed that boric acid is not directly responsible for the poor antiwear performance as previously understood. Tribochemistry results by this thesis has shown that high atomic concentration of boron and particles such as; boron nitride and carbides acts as third body abrasives, are responsible for the poor antiwear performance. The established antiwear mechanism of borate tribofilms relies on the digestion of abrasive iron oxides by trigonal structural groups in boron oxide. Results at different test conditions from this research have indicated that boric acid, iron oxyhydroxide, and tetragonal structural units in boron oxide plays a major role in this process. The established friction reducing mechanism of boron-containing tribofilms relies on the weak van der Waal’s of boric acid and passivation of its high energy edge-sites by moisture. Another major finding of this PhD thesis is that decomposition and volatility of boric acid at certain temperatures affects the easy shear of the lamellar.udAn important finding from this study indicated that the abnormal behaviour of boron oxide effect in borosilicate glass manufacture could also affect the antiwear performance and durability of tribofilms containing nanoparticle alkali borate ester. In addition, the hardness of built-up tribofilms from oils containing hydrated potassium borate was found to be comparable to ZDDP, unlike organic borates which gave significantly higher hardness. Another major finding of this research is that in moisture-rich atmosphere, borate tribofilms formed on ferrous surfaces was more wear-resistant than ZDDP due to their different tribochemistry.ud
机译:全球对于来自汽车污染源的环境影响的关注要求在润滑油中大量减少磷和硫基抗磨添加剂。在润滑油中用作抗磨/极压(EP)添加剂的此类添加剂之一是二烷基二硫代磷酸锌(ZDDP)。 ZDDP的潜在替代品是抗磨/ EP硼基添加剂。在这项研究中,考虑对不同类型的硼酸盐抗磨添加剂的模型油的摩擦学性能进行综合评估,以便与摩擦接触的钢表面上的ZDDP进行比较。 ud在本文中,使用销钉往复式平板试验台在边界润滑条件下进行了纯滑动的摩擦学实验,其变化如下:油中的添加剂浓度,散装油温度,滑动过程,溶解和无水污染测试。评价了摩擦膜的摩擦响应系数和抗磨性能。与ZDDP相比,对模型油进行了散装油分析,以评估其对不同热和氧化条件的响应。此外,对关键的结晶硼化合物进行了化学表征。使用表面分析技术对摩擦学测试过程中产生的摩擦膜的物理和化学方面进行了评估,这些技术包括:光学白光干涉法,原子力显微镜(AFM),聚焦离子束扫描电子显微镜(FIB-SEM),拉曼光谱法,X射线光电子能谱(XPS)和纳米压痕。 ud这项研究的主要发现之一是,与ZDDP和其他合成的硼酸盐添加剂相比,水解不稳定的硼酸盐添加剂的摩擦膜与较差的抗腐蚀性能相比,抗磨性能差。这项研究表明,如先前所了解的那样,硼酸不是造成抗磨性能差的直接原因。本论文的摩擦化学结果表明,高原子浓度的硼和诸如氮化硼和碳化物充当第三种磨料,是造成抗磨性能差的原因。硼酸盐摩擦膜的已建立的抗磨机理取决于氧化硼中三角结构基团对磨料氧化铁的消化。这项研究在不同测试条件下的结果表明,氧化硼中的硼酸,羟基氧化铁和四方结构单元在此过程中起主要作用。含硼摩擦膜的降低摩擦的机制建立在弱的范德华硼酸和高能边缘部位受潮气钝化的作用下。该博士学位论文的另一个主要发现是,硼酸在一定温度下的分解和挥发会影响层状膜的易剪切性。 ud这项研究的一个重要发现表明,硼硅酸盐玻璃制造中氧化硼效应的异常行为也可能会影响硼硅酸盐玻璃的剪切。含纳米级硼酸碱酯的摩擦膜的抗磨性能和耐久性。此外,发现由含水合硼酸钾的油中堆积的摩擦膜的硬度与ZDDP相当,而有机硼酸盐的硬度明显更高。这项研究的另一个主要发现是,在富含水分的气氛中,由于摩擦化学不同,在铁质表面上形成的硼酸盐摩擦膜比ZDDP更具耐磨性。

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    Animashaun Lukman Aremu;

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