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油胺改性碳包覆二硫化钼复合材料的制备及其摩擦学性能分析

Preparation and tribological properties of oleylamine-modified carbon coated molybdenum disulfide composites

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【作者】 程启文; 李清华; 王浩帆; 曹永海; 王红娟; 余皓;

【Author】 CHENG Qiwen;LI Qinghua;WANG Haofan;CAO Yonghai;WANG Hongjuan;YU Hao;School of Chemistry and Chemical Engineering,South China University of Technology;Ammed Technology Corporation;

【通讯作者】 余皓;

【机构】 华南理工大学化学与化工学院; 安美科技股份有限公司;

【摘要】 合成酯类润滑油因其良好润滑及降解性能,契合节能环保需求,已成为矿物油的重要替代方案。为适配实际工况,需开发专用酯类油润滑添加剂。本文针对二硫化钼(MoS2)这一典型二维纳米润滑材料,通过单宁酸-铁离子(TA-Fe3+)络合作用包覆后退火制备MoS2@C复合材料,通过碳包覆保护内部MoS2抵抗其固有氧化失效问题,同时通过化学吸附或配位作用将油胺(OAm)的长链烷基枝接到MoS2@C表面。所得OAm-MoS2@C改性材料在酯类基础油三羟甲基丙烷油酸酯(TMPTO)中稳定分散30天。通过多种表征方法对材料结构进行了表征。添加0.3%(质量分数) OAm-MoS2@C-300(300℃退火制备得到的MoS2@C经OAm改性后命名为OAm-MoS2@C-300)时,在392N载荷下TMPTO与基础油相比平均摩擦系数和平均磨斑直径分别减小了33.0%和14.4%,最大无卡咬负荷PB及烧结负荷PD分别提升了94.9%及25%。最后通过X射线光电子能谱(XPS)、拉曼光谱对摩擦表面进行了表征,其表现出优化成膜及协同润滑的润滑机理,未来可应用于切削油领域,有效减少摩擦磨损。

【Abstract】 Synthetic ester-based lubricants, owing to their excellent lubricating performance and biodegradability, align with the requirements of energy conservation and environmental protection, serving as a critical alternative to mineral oils. To adapt to practical operating conditions, the development of specialized lubricant additives for ester-based oils is essential. This work focused on molybdenum disulfide(MoS2), a typical two-dimensional nanomaterial with remarkable lubrication properties. Through a novel strategy combining tannic acid-iron ion(TA-Fe3+) complexation followed by annealing, an oleylamine-modified carbon-coated MoS2 composite(MoS2@C) was fabricated. The carbon coating served as a protective barrier to prevent the inherent oxidation-induced degradation of MoS2, while the long-chain alkyl groups of oleylamine(OAm) were grafted onto the MoS2@C surface via chemisorption or coordination bonding. The resultant OAm-MoS2@C additive demonstrated stable dispersion in the ester-based oil trimethylolpropane trioleate(TMPTO) over 30 days. The material’s structure was characterized using multiple characterization techniques. Notably, with the addition of 0.3% OAm-MoS2@C-300, the average friction coefficient and average wear scar diameter were reduced by 33.0% and 14.4%, respectively, compared to the base oil under a load of 392N. Furthermore, the maximum non-seizure load(PB) and sintering load(PD) were enhanced by 94.9% and 25%, respectively. Finally, the tribological surface was characterized using X-ray photoelectron spectroscopy(XPS) and Raman spectroscopy, revealing a lubrication mechanism characterized by optimized film formation and synergistic lubrication effects. This approach showed promise for applications in cutting fluids, where it could effectively reduce friction and wear.

  • 【文献出处】 化工进展 ,Chemical Industry and Engineering Progress , 编辑部邮箱 ,2025年S1期
  • 【分类号】TB33;TH117
  • 【下载频次】17
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