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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >New condensation-type monomer combinations as ashless antiwear compositions
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New condensation-type monomer combinations as ashless antiwear compositions

机译:新的缩合型单体组合作为无灰抗磨组合物

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Environmentally acceptable antiwear additives should preferably not contain more elements than carbon, hydrogen, oxygen, nitrogen; compounds composed of these elements can be selected or designed to be biodegradable. Most recently, lactam compounds were found to be very effective antiwear additives towards ceramic materials as well as metals. Lactam compounds are referred to as cycloamides. This paper aims at (i) describing compounds of a new antiwear additive group of lactams; particular emphasis is on caprolactam, the monomer used to synthesize Nylon 6; (ii) demonstrating the large synergistic antiwear effect observed when caprolactam is mixed with another condensation-type monomer, i.e. C{sub}36 dimer acid/glycol monoester; and (iii) showing one example of possible practical applications of such mixtures as specific running-in lubricants. Tribological tests carried out on a high-speed/High-load pin-on-disk machine demonstrated that caprolactam is an extremely effective antiwear additive for alumina-on-alumina as well as steel-on-steel systems. Similar antiwear effectiveness was also achieved for higher molecular weight cycloamides, e.g. laurolactam. Compositions of the monoester and caprolactam were tested using the T- 11 pin-on-disk tester developed by the Institute for Terotechnology in Radom, Poland. This apparatus allows one to run tests at elevated temperatures up to around 300℃. It also continuously records the coefficient of friction and linear displacement due to wear. Combinations of the monoester and caprolactam showed a striking synergistic antiwear effect and reduced friction coefficient. A new small engine running-in lubrication approach is also described. This approach not only provides excellent and most impressive running-in performance but also results in substantial economic savings in labor and materials.
机译:环境可接受的抗磨添加剂的元素含量最好不超过碳,氢,氧,氮。可以选择或设计由这些元素组成的化合物可生物降解。最近,发现内酰胺化合物对陶瓷材料以及金属是非常有效的抗磨添加剂。内酰胺化合物称为环酰胺。本文旨在(i)描述一种新的内酰胺抗磨添加剂组的化合物;特别强调的是己内酰胺,用于合成尼龙6的单体。 (ii)证明当己内酰胺与另一种缩合型单体,即C {sub} 36二聚酸/乙二醇单酯混合时,观察到大的协同抗磨作用; (iii)示出了这种混合物作为特定磨合润滑剂的可能实际应用的一个例子。在高速/高负荷针盘式机床上进行的摩擦学测试表明,己内酰胺是用于氧化铝对氧化铝以及钢对钢系统的极其有效的抗磨添加剂。对于较高分子量的环酰胺,例如碳酸氢钠,也获得了类似的抗磨效果。月桂内酰胺。单酯和己内酰胺的组成使用波兰拉多姆工业技术研究所开发的T-11针盘测试仪进行测试。该仪器可以在高达300℃的高温下进行测试。它还连续记录由于磨损引起的摩擦系数和线性位移。单酯和己内酰胺的组合显示出惊人的协同抗磨作用,并降低了摩擦系数。还描述了一种新的小型发动机磨合润滑方法。这种方法不仅可以提供出色且令人印象深刻的磨合性能,还可以节省大量的人工和材料经济。

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