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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Tribological performance and action mechanism of S-[2-(acetamido) thiazol-1-yl] dialkyl dithiocarbamate as additive in rapeseed oil
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Tribological performance and action mechanism of S-[2-(acetamido) thiazol-1-yl] dialkyl dithiocarbamate as additive in rapeseed oil

机译:菜籽油中S- [2-(乙酰氨基)噻唑-1-基]二烷基二硫代氨基甲酸酯的摩擦学性能及作用机理

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摘要

There has been a growing concern for the use of environmentally friendly lubricants because of the worldwide interest in environmental issues. This has promoted the development of new environmentally friendly lubricants and additives. In this paper, three potential ashless additives, S-[2-(acetamido) thiazol-1-yl] dialkyl dithiocarbamate, were prepared. The tribological behavior of the synthesized compounds as additives in rapeseed oil (RO) were evaluated with a four-ball wear tester. The elemental composition and chemical nature of the antiwear film generated on steel counterfaces were investigated with electron probe microanalysis (EPMA) and X-ray photoelectron spectroscopy (XPS). It was found that the synthesized compounds as additives in rapeseed oil had shown improved extreme pressure and antiwear properties and friction-reducing behavior as compared with the rapeseed oil alone. The protective film containing a reaction layer and adsorption layer was found to be formed on the wear surface. The elemental sulfur contained in the dialkyl dithiocarbamate group and thiazole group may react with counterface metal, and result in the formation of reaction films containing sulfate, organosulfur compounds and FeS{sub}2. The nitrogen element was merely adsorbed on the lubricating surface and did not react with the metal. In addition, the polymerized ester produced by rapeseed oil also played an important role in the adsorption film.
机译:由于世界范围内对环境问题的关注,人们越来越关注使用环保润滑剂。这促进了新型环保润滑剂和添加剂的开发。本文制备了三种潜在的无灰添加剂,即S- [2-(乙酰氨基)噻唑-1-基]二烷基二硫代氨基甲酸酯。用四球磨损测试仪评估了合成化合物作为菜籽油(RO)中添加剂的摩擦学行为。用电子探针显微分析(EPMA)和X射线光电子能谱(XPS)研究了在钢对接面上产生的抗磨膜的元素组成和化学性质。已经发现,与单独的菜籽油相比,作为菜籽油中添加剂的合成化合物显示出改善的极压和抗磨性能以及减少摩擦的行为。发现在磨损表面上形成了包含反应层和吸附层的保护膜。二烷基二硫代氨基甲酸酯基和噻唑基中所含的元素硫可能与对立金属反应,并导致形成含有硫酸盐,有机硫化合物和FeS {sub} 2的反应膜。氮元素仅吸附在润滑表面上,并且不与金属反应。另外,菜籽油产生的聚合酯在吸附膜中也起重要作用。

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