论文成果
Lubricity and mechanism of catechol-based biomimetic lubricant in water-based drilling fluid
摘要:In this study, the lubrication performance and underlying mechanism of catechol-based biomimetic lubricants in water-based drilling fluids were investigated. A catechol-based biomimetic lubricant, L3,4, was synthesized by acid and oleyl alcohol utilizing the strong underwater adhesion of DOPA. Besides, the significant influence of phenolic hydroxyl group positioning on the adhesion performance, and consequently, the lubrication and wear resistance properties of the lubricants were revealed. Lubrication performance and wear resistance were evaluated through extreme pressure lubrication testers, four-ball friction machines, and scanning electron microscopy. In bentonite, L3,4 exhibited the best lubrication performance, with a low coefficient of friction (COF) of 0.06 at a 1% addition, a wear scar diameter of 0.365 mm, and a temperature resistance of 210 ℃. In contrast, L3,5 showed moderate lubricity with a COF of 0.16, while L2,5 showed no lubrication capabilities. X-ray photoelectron spectroscopy was used to analyze the composition and thickness of the surface lubrication film, revealing that the phenolic hydroxyl structure enhances the adhesion ability of lubricants on metal surfaces. L3,4, containing a catechol structure, formed a dense organic film of thickness exceeding 100 nm on the metal surface through bidentate metal-ligand bonds; L3,5, with a meta-hydroxy structure, formed a lubrication film of thickness lower than 80 nm through hydrogen bond adsorption; and L2,5, with a para-hydroxy structure, formed a lubrication film of thickness lower than 20 nm. L3,4 addressed the inadequate lubrication exhibited by ester-based lubricants in water, attributed to their insufficient adhesion, which prevented the formation of an effective lubrication film on the surface of drilling pipe. ? 2023 Elsevier Ltd
ISSN号:0301-679X
卷、期、页:卷188
发表日期:2023-10-01
影响因子:0.000000
期刊分区(SCI为中科院分区):一区
收录情况:SCI(科学引文索引印刷版),EI(工程索引),SCIE(科学引文索引网络版)
发表期刊名称:Tribology International
参与作者:刘凡,刘仁通
通讯作者:杨旭坤,董腾飞
第一作者:蒋官澄,贺垠博
论文类型:期刊论文
论文概要:杨旭坤,蒋官澄,刘凡,贺垠博,刘仁通,董腾飞,Lubricity and mechanism of catechol-based biomimetic lubricant in water-based drilling fluid,Tribology International,2023,卷188
论文题目:Lubricity and mechanism of catechol-based biomimetic lubricant in water-based drilling fluid
分享到:


