首页> 外文期刊>Tenside Surfactants Detergents: Journal for Theory, Technology and Application of Surfactants >Study of Tribological Synergistic Effect of N-Containing Heterocyclic Borate Ester with Tricresyl Phosphate as Rapeseed Oil Additive
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Study of Tribological Synergistic Effect of N-Containing Heterocyclic Borate Ester with Tricresyl Phosphate as Rapeseed Oil Additive

机译:含N含N型杂环硼酸酯与三氯磺酰酯作为菜籽油添加剂的摩擦硼酸酯的摩擦学协同作用研究

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摘要

A single borate ester additive sometimes fails to meet the requirements of modern working conditions, it needs two or more additives for the use. Two N-containing heterocyclic borate esters, H-benzotriazol-1-yl) ethyl bis(2-aminoethyl) borate (BEB) and bis-(2-amionethyl) (2-benzothiazol-2-ylthio)ethyl borate (MEB) have been synthesized. Their tribological properties were studied by a four-ball tester after mixing with tricresyl phosphate (TCP) in rapeseed oil (RSO). The results show that these complex additives have strong synergistic effects on load carrying and anti-wear properties. At a mass ratio of BEB (MEB) to TCP of 0.5:0.5, the load carrying capability (P-B value) of RSO can be improved by 160.6% and 204.2%, respectively. At the same mass ratio, the load carrying capability of the complex additive from the TMx series (MEB with TCP) was better than that of the TBx series (BEB with TCP). The anti-wear effect of TBx was better than that of TMx at high load. The friction reduction of 196 N showed little difference because of the small difference in physical adsorption capacity between TCP and BEB (MEB). The analytical results of Scanning Electron Microscopy (SEM) and X-ray Photoelectron Spectroscopy (XPS) on the worn steel ball surfaces showed that the complex additives were adsorbed on the lubricating surface and formed a stable protective film during the sliding process due to absorption and tribochemical reactions between the borate ester, TCP and metal surface which helped to improve the tribological properties of RSO.
机译:单一硼酸酯添加剂有时不能满足现代工作条件的要求,需要使用两种或更多种添加剂。含两种N型杂环硼酸酯,H-苯并二唑-1-基)乙基双(2-氨基乙基)硼酸硼(BEB)和双 - (2-炔醇-2-基)(2-苯并噻唑-2-基)乙酸盐(MEB)已被综合。在用油菜籽油(RSO)中的三氯磺酰基(TCP)混合后,通过四球测试仪研究了它们的摩擦学特性。结果表明,这些复杂的添加剂对负荷承载和抗磨损性能具有很强的协同作用。以0.5:0.5的BEB(MEB)至TCP的质量比,RSO的负荷承载能力(P-B值)分别可以提高160.6%和204.2%。以相同的质量比,复杂添加剂从TMX系列(带TCP的MEB)的负载承载能力优于TBX系列(BEB带TCP)。 TBX的抗磨损效果优于高负荷的TMX。由于TCP和BEB(MEB)之间的物理吸附容量的差异差异,因此196 n的摩擦减少表现出很小的差异。磨损钢球表面上的扫描电子显微镜(SEM)和X射线光电子能谱(XPS)的分析结果表明,复合添加剂吸附在润滑表面上,并在由于吸收和吸收的滑动过程中形成稳定的保护膜硼酸酯,TCP和金属表面之间的致性化学反应有助于改善RSO的摩擦学性质。

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