首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Lubrication efficiency of vegetable oil nano-lubricants and solid powder lubricants
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Lubrication efficiency of vegetable oil nano-lubricants and solid powder lubricants

机译:植物油纳米润滑剂和固体粉末润滑剂的润滑效率

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摘要

Reducing crude oil reserves and also environmental pollution caused by its excessive use has led to numerous researches to find alternatives to petroleum-based oils. Thus, owing to lower pollution and higher lubrication efficiency, the use of vegetable base lubricants has been widely considered. Due to the unique properties of different nanoparticles such as sphericality and high surface area besides low environmental risk, the subjected nanoparticles can be applied as additives to the base lubricants and create optimal tribological properties. In this study, in order to improve the lubricating efficiency of vegetable base lubricants, SiO2 nanoparticles with different weight concentrations were used in the cold forging process of aluminum alloy. Then, the lubrication proficiency of both nano-lubricants and conventional solid powder lubricants in the forging industry was evaluated. Friction coefficient was determined by standard compression test and friction calibration curves. In order to evaluate the lubricants' efficiency, two key parameters, namely shear friction coefficient and surface roughness have been considered. Experimental results showed that the presence of SiO2 nanoparticles in the base lubricants significantly increased the lubrication efficiency of the base lubricants and notably reduced both the friction coefficient and surface roughness.
机译:减少原油储量以及由于过度使用原油造成的环境污染,导致了许多研究寻找石油基油的替代品。因此,由于较低的污染和较高的润滑效率,已广泛考虑使用植物基润滑剂。除了低环境风险外,由于不同纳米颗粒的独特性质(例如球形度和高表面积),因此经过处理的纳米颗粒可以作为添加剂应用于基础润滑剂,并产生最佳的摩擦学性能。在这项研究中,为了提高植物基润滑剂的润滑效率,在铝合金的冷锻过程中使用了不同重量浓度的SiO2纳米颗粒。然后,评估了纳米润滑剂和常规固体粉末润滑剂在锻造行业中的润滑能力。摩擦系数由标准压缩试验和摩擦校准曲线确定。为了评估润滑剂的效率,考虑了两个关键参数,即剪切摩擦系数和表面粗糙度。实验结果表明,基础润滑剂中SiO2纳米颗粒的存在显着提高了基础润滑剂的润滑效率,并显着降低了摩擦系数和表面粗糙度。

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