The Effecting of Various Parameters on the Thermophysical and Rheological Properties of SiO2 Nano-lubricating Oil in Petroleum Refineries

Alyaa M. Awad, K. Sukkar, Dalya M. Jaed
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Abstract

The improvement of the performance of automotive engines necessitated the use of effective lubricating oil. Experimentally explored are the thermophysical characteristics and rheological behavior of Nano-lubricating oil made by mixing SiO2 nanoparticles with stock-60. Nano-lubricant has been prepared with a two-step method using a magnetic stirrer as a first step mixing and an ultrasonic homogenizer. The rheological properties were investigated at various shear rates, temperature, and solid volume percent. This research was carried out on concentrations ranging from 0.1 % to 1.0 %. The results showed elevation in temperature, the dynamic viscosity dropped in all shear rates due to lower SiO2 NP concentrations and that all samples exhibited Newtonian behavior at all temperatures fixed. The thermal conductivity of nano-lubricating oil was tested at various temperatures ranging from 20°C to 50°C. The different solid volume percent of SiO2 NPs were in the range of 0 to 1% maximum enhancement value was achieved at higher temperature with increased volume percent of SiO2 NPs. Other important thermophysical properties of lube oil including flashpoint and pour point were also measured. The results revealed that adding SiO2 NPs to stock-60 at a solid volume percent of 1% will result in a maximum improvement of 12 % in flashpoint over the base oil, while the improvement of pour point was achieved at nano-addition of 0.75% and 1% compared with the base oil was increased from -3°C to -6°C.
不同参数对炼油厂SiO2纳米润滑油热物理及流变性能的影响
汽车发动机性能的提高要求使用有效的润滑油。实验研究了SiO2纳米颗粒与stock-60混合制备的纳米润滑油的热物理特性和流变性能。采用磁力搅拌器为第一步混合,超声均质机为第一步混合,采用两步法制备纳米润滑剂。研究了不同剪切速率、温度和固体体积百分比下的流变特性。本研究在0.1% ~ 1.0%的浓度范围内进行。结果表明,随着温度的升高,由于SiO2 NP浓度的降低,动态粘度在所有剪切速率下都有所下降,并且所有样品在所有固定温度下都表现出牛顿行为。在20 ~ 50℃的温度范围内测试了纳米润滑油的导热性。不同固相体积分数的SiO2 NPs在0 ~ 1%范围内,随着SiO2 NPs体积分数的增加,温度越高,增强值越大。润滑油的其他重要热物理性质,包括闪点和倾点也进行了测量。结果表明,在料60中以1%的固体体积添加SiO2 NPs,闪点比基础油提高了12%,而在纳米添加量为0.75%的情况下,浇注点比基础油提高了1%,从-3℃提高到-6℃。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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