首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Formulation of SiO2/oil nanolubricant for metal forming using hydrodynamic cavitation
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Formulation of SiO2/oil nanolubricant for metal forming using hydrodynamic cavitation

机译:使用流体动力空化制备SiO2 /油纳米磺酸金属形成

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A novel hydrodynamic cavitation-based dispensing process was developed to disperse SiO(2)nanoparticles into the base oil, and the effects of process parameters on dispersity and tribological properties of SiO2/oil nanolubricants were studied using the dynamic laser scattering and ring compression tests. With this process, nanolubricants with fine nanoparticles (139-1240 nm) were formulated. A mean particle size reduction of 78% was achieved in 60 min. This process can be scaled up for mass production with relative ease. The formulated SiO2/oil nanolubricants exhibited better tribological performance over that of base oil. Lubrication mechanisms of the SiO2/oil nanolubricant in metal forming were ascertained through analysis of the dispersity of nanolubricants and characterization of dents appearing on the surface of the deforming material. The study revealed the importance of formulating nanolubricants with specific particle size distribution that relate to the surface morphology of the deforming material. In this study, a nanolubricant with particle size of 3.6 mu m exhibited better lubrication on ring samples with dent depth of 4.7 mu m, implying that most nanoparticles were encapsulated in the dents facilitating hydrostatic lubrication.
机译:开发了一种新型的流体动力空化的分配过程以将SiO(2)纳米颗粒分散到基础油中,使用动态激光散射和环形压缩试验研究了方法参数对SiO 2 /油纳米脂烃的分散性和摩擦学性质的影响。通过该方法,配制具有细纳米颗粒(139-1240nm)的纳米脂磺酸。在60分钟内实现了78%的平均粒度。该过程可以相对容易地缩放批量生产。配制的SiO 2 /油纳米磺酸剂在基础油中表现出更好的摩擦学性能。通过分析纳米磺酸剂的分散性和出现在变形材料表面上的凹痕的特征来确定金属成形中SiO2 /油纳米润滑剂的润滑机制。该研究揭示了具有特定粒度分布的纳米磺润滑剂的重要性,所述粒度分布涉及变形材料的表面形态。在该研究中,具有3.6μm的颗粒尺寸的纳米磺润滑剂在环样上呈现更好的润滑,其凹陷深度为4.7μm,这意味着大多数纳米颗粒被包封在促进静压润滑的凹槽中。

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