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Tribological properties of nano-graphite as an additive in mixed oil-based titanium complex grease

机译:纳米石墨的摩擦学特性作为混合油基钛配合物润滑脂添加剂

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摘要

Nano-graphite was chosen as an additive to improve the tribological properties of titanium complex grease. The influence of the concentration of nano-graphite (N-G) with three average diameter sizes (2 m, 3.5 m, and 6 m) on the tribological properties of titanium complex grease was researched. It was determined that the optimum concentration of the three types of N-G is 0.8 wt%, 1.0 wt%, and 1.2 wt%. Futhermore, the titanium complex grease modified with nano-graphite with a concentration of 0.8 wt% is the optimum grease. Subsequently, the influence of load on the tribological properties of grease containing the optimum concentration (N-G) was studied. Compared to the base grease, the optimum grease showed a lower average friction coefficient, smaller diameter and better tribological performance under the same experimental load. The influence of dispersion homogeneity of N-G on the tribological properties of titanium complex grease was also investigated. The base titanium complex grease and titanium complex grease modified with nano-graphite were synthesized in the laboratory and their tribological properties were evaluated via the four-ball test. The worn surface of their wears scar was observed using SEM and the states of the typical elements were analyzed via XPS. It was uncovered that nano-graphite can improve the tribological properties of titanium complex grease due to the physical friction reduction by nano-graphite due to its interlayer slide and the supplemental effect of the tribochemical reaction anti-wear film composed of TiO2 and Fe3C.
机译:选择纳米石墨作为添加剂,以改善钛配合物润滑脂的摩擦学性质。研究了纳米石墨(N-G)的浓度对三个平均直径尺寸(2m,3.5m和6米)的钛络合物润滑脂的摩擦学性质的影响。确定三种类型的N-G的最佳浓度为0.8wt%,1.0wt%和1.2wt%。更新的是,用浓度为0.8wt%的纳米石墨改性的钛配合物润滑脂是最佳油脂。随后,研究了负荷对含有最佳浓度(N-G)的润滑脂的摩擦学性质的影响。与碱性润滑脂相比,在相同的实验载荷下,最佳油脂显示出较低的平均摩擦系数,较小的直径和更好的摩擦学性能。还研究了N-G对钛配合物润滑脂的摩擦学性质的分散均匀性的影响。在实验室中合成了用纳米石墨改性的钛络合物润滑脂和用纳米石墨改性的钛配体润滑脂,并通过四球试验评估其摩擦学性质。使用SEM观察其磨损瘢痕的磨损表面,通过XPS分析典型元素的状态。由于其层间隙,纳米石墨可以通过纳米石墨的物理摩擦而改善钛配合物润滑脂的摩擦学特性,并且由于其层间隙和由TiO2和Fe3C组成的致性化学反应抗磨膜的补充效果。

著录项

  • 来源
    《RSC Advances》 |2018年第73期|共12页
  • 作者

    Niu Ming; Qu Jianjun;

  • 作者单位

    Harbin Inst Technol Sch Mechctron Engn Harbin 150001 Heilongjiang Peoples R China;

    Harbin Inst Technol Sch Mechctron Engn Harbin 150001 Heilongjiang Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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