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Comparison of antiwear additive response among several base oils of different polarities

机译:不同极性几种基础油中抗磨添加剂反应的比较

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The antiwear performance of tricresyl phosphate dissolved in 11 kinds of base oils of different polarities has been studied A mineral oil (MO) and an alkylnaphthalene (AN) were used as nonor low-polarity base oils. Five polyol esters (POEs), Le.,three trimethylolpropane esters and two pentaerythritol esters, and four polyalkylene glycols (PAGs) were used as the high polarity base oils. A four-ball friction apparatus was used to determine the antiwear performance, using commercially availablebearing steel balls as test specimens. All the TCP-formulated base oils showed optimum concentration characteristics for minimizing wear. It is shown that the order of the optimum concentration for POEs and PAGs can be reasonably explained by theinteraction between additive and base oils, by using their solubility parameters and molecular sizes. These oils'dielectric constants showed little correlation with optimum concentrations. The dielectric constant showed large effects on such non- orlow-polarity oils as MO and AN. A good correlation of the optimum concentration for all the base oils was obtained when it was arranged as a function ofSP{sub}(base)/SP{sub}(TCP){sup}(14.2)(Mw{sub}(base)/Mw{sub}(TCP)){sup}(-2.78)(ε){sup}(18.6).
机译:磷酸三甲苯酯溶于11种不同极性的基础油的抗磨损性能进行了研究矿物油(MO)和烷基萘(AN)用作nonor低极性的基油。五个多元醇酯(POE),乐。,三三个羟甲基丙烷酯和二季戊四醇酯,和四个聚亚烷基二醇(PAG)作为高极性的基油。四球摩擦装置是用来确定抗磨性能,使用可商availablebearing钢球作为试样。所有TCP配制的基础油表现出最佳浓度特性最大限度地减少磨损。结果表明,对于聚烯烃弹性体和PAG的最佳浓度的顺序可以合理地通过theinteraction添加剂和基础油之间所解释的,通过使用它们的溶解度参数和分子大小。这些oils'dielectric常数显示出与最佳浓度相关性不大。介电常数显示出对此类非orlow极性油如MO和AN大的影响。当它被设置为一个函数OFSP {子}(基)/ SP {子}(TCP){SUP}得到的所有基础油的最佳浓度的良好的相关性(14.2)(MW {子}(基峰) /Mw{sub}(TCP)){sup}(-2.78)(ε){sup}(18.6)。

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