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Engineered silica nanoparticles as additives in lubricant oils

机译:作为润滑油中的添加剂的工程化二氧化硅纳米粒子

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摘要

Silica nanoparticles (SiO2 NPs) synthesized by the sol–gel approach were engineered for size and surface properties by grafting hydrophobic chains to prevent their aggregation and facilitate their contact with the phase boundary, thus improving their dispersibility in lubricant base oils. The surface modification was performed by covalent binding of long chain alkyl functionalities using lauric acid and decanoyl chloride to the SiO2 NP surface. The hybrid SiO2 NPs were characterized by scanning electron microscopy, transmission electron microscopy, Fourier transform infrared spectroscopy, simultaneous differential thermal analysis, nuclear magnetic resonance and dynamic light scattering, while their dispersion in two base oils was studied by static multiple light scattering at low (0.01% w/v) and high (0.50%w/v) concentrations. The nature of the functional layer and the functionalization degree seemed to be directly involved in the stability of the suspensions. The potential use of the functional SiO2 NPs as lubricant additives in base oils, specially designed for being used in hydraulic circuits, has been outlined by analyzing the tribological properties of the dispersions. The dendritic structure of the external layer played a key role in the tribological characteristics of the material by reducing the friction coefficient and wear. These nanoparticles reduce drastically the waste of energy in friction processes and are more environmentally friendly than other additives.
机译:通过溶胶 - 凝胶方法合成的二氧化硅纳米颗粒(SiO 2 NPS)通过接枝疏水链来设计成尺寸和表面性质,以防止它们的聚集并促进它们与相边界的接触,从而改善其在润滑油基础油中的分散性。通过使用月桂酸和癸酰氯与SiO 2 NP表面的长链烷基官能团的共价结合进行表面改性。通过扫描电子显微镜,透射电子显微镜,傅里叶变换红外光谱,同时差分热分析,核磁共振和动态光散射来表征杂种SiO2 NPS,同时通过低温静态多光散射研究了两种基础油中的分散。 0.01%w / v)和高(0.50%w / v)浓度。功能层的性质和官能化程度似乎直接参与悬浮液的稳定性。已经通过分析分散体的摩擦学特性,概述了官能SiO2 NP作为基础油中的润滑剂添加剂,专门用于用于液压电路的润滑剂添加剂。通过降低摩擦系数和磨损,外层的树突结构在材料的摩擦学特征中发挥了关键作用。这些纳米颗粒在摩擦过程中彻底减少了能量的浪费,并且比其他添加剂更环保。

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