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Tribological Properties of Engine Lubricant With Nano-Copper Oxide as an Additive

机译:发动机润滑剂与纳米铜氧化物作为添加剂的摩擦学特性

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Anti-wear additives are mostly required to improve lubricant properties and hence tribological performance. Addition of nanoparticles to lubricant oils reduces friction and thus enhances the lubrication characteristics. The mechanism of friction reduction in friction could be justified by more than one method. In this work, copper oxide nano-material was added to the engine lubricant oil Mobil 1 SAE15W-40SF with 0.1% wt. concentration. Two new engines were used and operated for 1000 hours, where nanolubricant was added to one of them and regular lubricant was used in the other. Twelve samples were taken periodically from each engine. ASTM-D6595 spectrometry standard was used in order to measure the wear particles in the taken oil samples. Further investigation was done by doing more tests to some of the oil samples using Laser Net Fines Analyzer. Results showed an improvement in the friction properties through a reduction in wear rates in the case of using nano-additives. Basically a wear reduction is found for aluminum, iron and chromium wear particles by 48%, 11.5% and 42%, respectively. Also, an average reduction in amount of specific wear particle was found by 39%, 36% and 60% for cutting wear, severe sliding wear and fatigue wear, respectively. A relevant decrease in engine temperature is found as well.
机译:抗磨损添加剂主要是为了改善润滑剂性能,从而改善摩擦学性能。向润滑油添加纳米颗粒可减少摩擦,从而提高润滑特性。摩擦摩擦机制可以通过多种方法是合理的。在这项工作中,将氧化铜纳米材料加入到发动机润滑油MOBIL 1 SAE15W-40SF中,0.1%wt。专注。使用两个新的发动机并操作1000小时,其中将纳米磺酸加入其中一个,另一个润滑剂用于另一个。从每个发动机周期性地进行十二个样品。使用ASTM-D6595光谱法,以测量拍摄的油样中的磨损颗粒。通过使用激光网粉末分析仪对一些油样品进行更多测试来进行进一步的调查。结果表明,在使用纳米添加剂的情况下,通过减少磨损率的摩擦性能提高。基本上发现铝,铁和铬磨损颗粒的耐磨性分别为48%,11.5%和42%。而且,针对切削磨损,严重滑动磨损和疲劳磨损的39%,36%和60%发现了特异性磨粒量的平均降低。也发现了发动机温度的相关减少。

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