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Constructing a novel and high-performance liquid nanoparticle additive from a Ga-based liquid metal

机译:构造一个新颖高效液相从遗传液体的纳米添加剂金属

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摘要

The development of a high-performance nanoparticle (NP) additive for lubricating oil is a research hotspot for the tribology and engineering areas. In this study, the concept of a novel liquid nano-additive has been proposed based on the emergence of Ga-based liquid metals (GLMs), which display excellent extreme-pressure and high-temperature lubricity. Herein, the liquid NPs (designated as GLM-NP/C12) were prepared from a GLM droplet through the ultrasonic method, modified with 1-dodecanethiol, and are mainly distributed at 286 +/- 21 nm. They have a core-shell structure with liquid-state GLM on the inside, and gallium oxide and a self-assembled alkylthiolate monolayer on the outside. In terms of the tribological performance, GLM-NP/C12s have a wonderful dispersion-stability in PAO10 oil, and provide excellent anti-adhesion, friction-reducing, and wear-resistance properties. When the additive concentration was 0.17 wt% in PAO10, the friction coefficient was reduced by 39% and the wear rate was reduced by 93% compared to those lubricated by the neat PAO10. This kind of liquid nano-additive has the advantages of easy preparation, internal composition regulation and recyclability, compared to conventional solid NPs. In addition, the liquid NPs were readily introduced into the frictional interfaces. More generally, the optimal additive concentration of the liquid NPs was much lower than that of the solid NPs. This observation has important implications for understanding the differences of the lubrication mechanisms between the solid and liquid nano-additives, and may provide a new design method and strategy of nano-additives for lubricating oil.
机译:高性能纳米粒子的发展(NP)对润滑油添加剂的研究摩擦学和工程领域的热点。在这项研究中,一种新型液体的概念nano-additive提出了基于出现遗传液体金属(glm)展示优秀的耐特高压和高温润滑性。NPs(指定为GLM-NP / C12)准备全球语言监测液滴通过超声方法,与1-dodecanethiol修改,主要是分布在286 + / - 21海里。核壳结构与漠视液态内,氧化镓和自组装alkylthiolate单层。的摩擦学性能,GLM-NP / c12一个很棒的dispersion-stability PAO10石油,并提供优秀的防粘,减少摩擦,耐磨性属性。在PAO10 0.17 wt %,摩擦系数减少39%,磨损率降低了93%相比润滑的整洁PAO10。的优点容易准备,内部组合管理和再循环能力,相比传统的固体NPs。液体NPs是容易引入摩擦界面。NPs最佳添加剂浓度的液体远远低于固体NPs。观察具有重要影响理解差异的润滑固体和液体之间的机制nano-additives,可能提供一个新的设计nano-additives的方法和策略润滑油。

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