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ZDDP-ADDITIVE-CATALYST INTERACTIONS IN ENGINE OIL

机译:发动机油中的ZDDP-添加剂 - 催化剂相互作用

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The phosphorous content in engine oil is found to be the major cause of the poisoning of Catalytic converters in automobiles, hence environmental regulations limiting the phosphorous level in GF4 and GF5 oils have been introduced. Zinc dialkyl dithiophosphate (ZDDP) being the only major source of phosphorous in current engine oils, is also an indispensable component of the additive package in these oils for it has been the primary anti wear - as well as anti oxidant - additive for over fifty years. Efforts are made to replace the ZDDP with other materials with the same properties which would not be harmful to the environment and also an economically feasible substitute. Another solution to this problem is to reduce the amount of ZDDP used while improving its antiwear performance. Anti-wear action of ZDDP, involves its break down reaction with the steel surface by Zn Fe ion exchange and subsequent formation of an amorphous chemisorbed film containing zinc, phosphorus, oxygen and sulfur and also iron in the form of polyphosphates and sulfates of zinc and iron. The efficiency of this mechanism is reduced by parallel reactions between ZDDP and other additives as well as their antagonistic effects. Introduction of a material with catalytic properties which would reduce the negative effects of the presence of the other additives on the anti wear properties of ZDDP is an option that was explored in this paper. Both triboligical wear tests (Ball on cylinder lubricity evaluation tests) as well as mechanism studies (DSC, FT-IR and NMR) were used to evaluate the performance of ZDDP in the presence of the most common additives (i.e. Antioxidants, Detergents and Dispersant). Iron Fluoride is also introduced as a potential additive to improve the efficiency of wear protection mechanism of ZDDP. The improvements observed in the presence of the Iron Fluoride will allow further reducing the amount of ZDDP in engine oils containing this material as an additive.
机译:发现发动机油中的磷含量是汽车中催化转化器中毒的主要原因,因此引入了限制GF4和GF5油中磷水平的环境法规。二烷基二硫代二磷酸二磷酸二磷酸二磷酸(ZDDP)是当前发动机油中磷的唯一主要来源,也是这些油中添加剂包装的不可或缺的组成部分,用于它已经是初级防磨损 - 以及五十年的抗氧化剂 - 添加剂。努力用具有相同性质的其他材料取代ZDDP,这些材料不会对环境有害,也是一种经济可行的替代品。此问题的另一个解决方案是减少在提高其抗磨机性能的同时使用的ZDDP的量。 ZDDP的抗磨损作用涉及通过Zn Fe离子交换与钢表面的分解反应,并随后形成含锌,磷,氧和硫的无定形化学膜,也以多磷酸锌和锌的硫酸盐铁。通过ZDDP和其他添加剂之间的平行反应以及它们的拮抗作用,这种机制的效率降低。引入具有催化性质的材料,这将降低其他添加剂对ZDDP的抗磨性能的负面影响,这是本文探索的选项。派生磨损试验(球缸润滑性评价试验)以及机制研究(DSC,FT-IR和NMR)用于评估ZDDP在最常见的添加剂(即抗氧化剂,洗涤剂和分散剂)的存在下的性能。还将铁氟还原为潜在的添加剂,以提高ZDDP的耐磨机理效率。在氟化铁存在下观察到的改进将允许进一​​步降低含有该材料作为添加剂的发动机油中的ZDDP的量。

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