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Antiwear film formation by ZnDTP, detergent, and dispersant components of passenger car motor oils

机译:ZnDTP,清洁剂和乘用车机油的分散剂成分形成的抗磨膜

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摘要

Lubricant suppliers are under increasing pressure to provide high quality lubricants with superior oxidation and wear performance. In recent years, governmental regulations have required exhaust gas catalysts to reduce emissions of hydrocarbon and nitrogen oxides, key components of smog. Exhaust gas catalysts are sensitive to the types and levels of additives present in engine oil. The next generation of motor oils may have significantly lower sulfur, phosphorus, and sulfated ash contents to ensure exhaust gas catalyst performance throughout the life of the engine. However, phosphorus is a key component in commercial engine oils, used for both antiwear and oxidation inhibition. Engine testing of new low-sulfur, low-phosphorus antiwear components is expensive and time consuming so bench testing of potential candidates is highly desirable as a first step evaluation. Electrical contact resistance (ECR) has been shown to be a convenient method to assess antiwear film formation in a ball-on-flat bench wear test. Correlation of the bench test to fired engines was demonstrated for lubricants varying only in the type of detergent. Previous papers have examined film formation by one and two component formulations of zinc dialkyidithiophosphate (ZnDTP) and detergents. In this study, the ECR technique is systematically extended to formulations including ZnDTP detergent, and dispersant. Both type and level of components are considered and the implications for engine performance are discussed.
机译:润滑剂供应商承受着越来越大的压力,需要提供具有卓越的抗氧化和耐磨性能的高质量润滑剂。近年来,政府法规要求使用废气催化剂以减少碳氢化合物和氮氧化物(烟雾的主要成分)的排放。排气催化剂对发动机油中存在的添加剂的类型和含量敏感。下一代机油的硫,磷和硫酸盐灰分含量可能大大降低,以确保发动机整个使用寿命内的废气催化剂性能。但是,磷是商用发动机油中的关键成分,可用于抗磨和抗氧化。对新的低硫,低磷抗磨部件进行发动机测试既昂贵又费时,因此非常需要对潜在候选产品进行台架测试,作为第一步评估。电接触电阻(ECR)已被证明是在平地球台式试验中评估抗磨膜形成的便捷方法。对于仅在清洁剂类型中变化的润滑剂,已证明了基准试验与燃烧发动机的相关性。以前的论文已经研究了通过二和二烷基硫代磷酸锌(ZnDTP)和去污剂的一种和两种组分配方的成膜作用。在这项研究中,ECR技术被系统地扩展到包括ZnDTP去污剂和分散剂的配方。组件的类型和级别均被考虑,并且讨论了对发动机性能的影响。

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