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Electrical contact resistance measurements Part I. Temperature effects on antiwear film formation by secondary, primary, and aryl zinc dithiophosphates in fully formulated engine oil

机译:电接触电阻测量部分I.在完全配制的发动机油中的二次,初级,芳基二硫代磷酸锌的温度效应抗磨膜形成

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Modern Passenger Car Motor Oils (PCMOs) are formulated to provide superior wear, oxidation, and deposit control under the most demanding driving conditions. In most PCMOs, zinc dialkyldithiophosphate (ZnDTP) has been the dominant antiwear and antioxidant agent for well over 50 years. Unfortunately, the phosphorus in ZnDTP may partially deactivate the exhaust emission catalyst. To ensure the catalysts function for at least 120,000 miles, engine manufacturers are exploring phosphorus limitations for upcoming PCMO performance categories. This paper explores the antiwear film formation of low phosphorus engine oils using the Electrical Contact Resistance bench test. A prototype ILSAC GF-4 formulation blended with varying amounts and types of ZnDTP was tested at temperatures typical of operating engines. Secondary ZnDTP was found to produce the best films under the broadest temperature range. As the concentration of phosphorus derived from secondary ZnDTP was reduced from 0.1 wt% to 0.08 wt%, the antiwear film became unstable, sometimes forming and sometimes not. At 0.05 wt% and less phosphorus, no effective antiwear film formed. In similar experiments with primary and aryl ZnDTP, no effective antiwear film formed at any phosphorus level up to the currently allowable 0.1 wt%.
机译:现代乘用车电机油(PCMOS)配制成在最苛刻的驾驶条件下提供卓越的磨损,氧化和存款控制。在大多数PCMOS中,Dialkyldithiophiophate(ZnDTP)锌二磷酸盐(ZnDTP)是多达50年多的抗磨和抗氧化剂。不幸的是,ZnDTP中的磷可以部分去激活排气催化剂。为了确保催化剂函数至少为120,000英里,发动机制造商正在探索即将到来的PCMO绩效类别的磷限制。本文探讨了使用电接触电阻台面试验探讨了低磷发动机油的抗磨成膜。在操作发动机典型的温度下测试了用不同量和ZnDTP的不同量和类型的ZnDTP混合的原型ILSAC GF-4制剂。发现次级ZnDTP在最广泛的温度范围内产生最佳薄膜。随着从二级ZnDTP的磷浓度从0.1wt%降低至0.08wt%,抗磨膜变得不稳定,有时形成且有时不是。在0.05wt%且少的磷中,没有形成有效的抗磨膜。在具有初级和芳基ZnDTP的类似实验中,在任何磷水平上没有形成的有效的抗服装膜,其达到目前允许的0.1wt%。

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