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Tribological Behaviour Improvement of Lubricant Using Copper (II) Oxide Nanoparticles as Additive

机译:以氧化铜(II)纳米颗粒为添加剂的润滑剂的摩擦学性能改进

摘要

Tribological properties that include nanoparticles are an alternative to improve the tribological behaviour of lubricating oil, which has been investigated by many researchers for the past few decades. Various nanostructures can be used as additives for tribological improvement. However, this also depends on the characteristics of the nanoparticles. In this study, tribological investigation was performed to examine the effect of CuO nanoparticles on the tribological behaviour of Syntium 800 SL 10W−30. Three parameters used in the analysis using the wear tester (piston ring) were load, revolutions per minute (rpm), and concentration. The specifications of the nanoparticles, such as size, concentration, hardness, and shape, can affect the tribological behaviour of the lubricant. The friction and wear experiment was conducted using a tribo-tester and the Response Surface Methodology method was used to analyse any improvement of the performance. Therefore, two concentrations of 40 nm nanoparticles were used to conduct the experiments, namely, 0.005 wt % and 0.01 wt % and compared with base oil 0 wt % (control). A water bath sonicator was used to disperse the nanoparticles in base oil, while a tribo-tester was used to measure the coefficient of friction and wear rate. In addition, the thermal properties of the nanolubricant were also measured. The results have shown that the thermal conductivity of the nanolubricant was increased when compared with the base oil. Therefore, the results indicated that CuO nanoparticles had improved the tribological behaviour as well as the thermal properties of the nanolubricant oil.
机译:包括纳米颗粒在内的摩擦学性能是改善润滑油摩擦性能的一种替代方法,过去几十年来,许多研究人员已经对其进行了研究。各种纳米结构可以用作添加剂以改善摩擦学。但是,这也取决于纳米颗粒的特性。在这项研究中,进行了摩擦学研究,以研究CuO纳米颗粒对Syntium 800 SL 10W-30摩擦学行为的影响。使用磨损测试仪(活塞环)进行分析时使用的三个参数是负载,每分钟转数(rpm)和浓度。纳米粒子的规格(例如大小,浓度,硬度和形状)会影响润滑剂的摩擦学行为。使用摩擦测试仪进行了摩擦磨损实验,并使用响应表面方法学方法分析了性能的任何改善。因此,使用两种浓度的40 nm纳米颗粒进行实验,即0.005 wt%和0.01 wt%,并与0 wt%的基础油(对照)进行比较。使用水浴超声仪将纳米颗粒分散在基础油中,同时使用摩擦测试仪测量摩擦系数和磨损率。另外,还测量了纳米润滑剂的热性能。结果表明,与基础油相比,纳米润滑剂的热导率增加。因此,结果表明,CuO纳米颗粒改善了纳米润滑油的摩擦学性能和热性能。

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