首页> 外文期刊>Industrial Lubrication and Tribology >Tribological properties of Cyanex 301-modified MoS{sub}2 nano-sized hollow spheres in liquid paraffin
【24h】

Tribological properties of Cyanex 301-modified MoS{sub}2 nano-sized hollow spheres in liquid paraffin

机译:液体石蜡中Cyanex 301改性的MoS {sub} 2纳米空心球的摩擦学性能

获取原文
获取原文并翻译 | 示例
           

摘要

Purpose - The purpose of this paper is to investigate the tribological properties of MoS{sub}2 nano-sized hollow spheres in liquid paraffin (LP) and the corresponding action mechanism. Morever, its feasibity of industrial application as an oil additive in the industrial lubrication field is also explored. Design/methodology/approach - The tribological properties of MoS{sub}2 nano-sized hollow spheres (NH-MoS{sub}2) modified by Cyanex 301(di-(2,4,4-trimethylpentyl) dithiophosphinic acid) with size of 200 ~ 300 nm in LP are studied and compared with those of the commercial colloidal MoS{sub}2 (CC-MoS{sub}2) on a four-ball tester and an Optimol SRV Oscillating friction and wear tester in a ball-on disk configuration. The worn surfaces of the lower flat disc are examined with a scanning electron microscopy and an X-ray photoelectron spectroscopy, respectively. Findings - Results show that NH-MoS{sub}2 is a better extreme-pressure additive and anti-wear (AW) and friction-reducing additive in LP than CC-MoS{sub}2. Under the optimum concentration of 0.5 per cent for both NH-MoS{sub}2 and CC-MoS{sub}2 and the load of 400 N, the friction coefficient of NH-MoS{sub}2 + LP and CC-MoS{sub}2 + LP decreases about 43.8 and 6.3 per cent, and the wear volume loss decreases about 60.3 and 12.0 per cent compared with the pure LP. The boundary lubrication mechanism for NH-MoS{sub}2 + LP can be deduced as the effective chemical adsorption protective film formed by the long chain alkyls R and active elements (S and P) in the modification layer and tribochemical reaction film containing the tribochemical products of the additive. Moreover, sliding and rolling frictions co-exist in NH-MoS{sub}2 + LP, doing contributions to the good tribological properties as well. Originality/value - In this paper, the Cyanex 301-modified MoS{sub}2 nano-sized hollow spheres with diameter of 200 ~ 300 nm are firstly added into LP to investigate its tribological properties. The excellent AW and friction-reducing properties indicate that this MoS{sub}2 hollow spheres product is a good oil additive, and the fundamental data presented here will be useful for its further industrial application in the future.
机译:目的-本文的目的是研究液态石蜡(LP)中MoS {sub} 2纳米空心球的摩擦学特性及其相应的作用机理。此外,还探讨了其在工业润滑领域中作为油添加剂的工业应用的可行性。设计/方法/方法-用Cyanex 301(二-(2,4,4-三甲基戊基)二硫代次膦酸)修饰的MoS {sub} 2纳米空心球(NH-MoS {sub} 2)的摩擦学性能研究了在LP中200〜300 nm的波长,并将其与商业胶体MoS {sub} 2(CC-MoS {sub} 2)在四球测试仪和Optimol SRV振荡摩擦磨损测试仪中进行了比较。在磁盘配置上。下平板的磨损表面分别用扫描电子显微镜和X射线光电子能谱检查。研究结果-结果表明,与LP-CC-MoS {sub} 2相比,NH-MoS {sub} 2在LP中是一种更好的极压添加剂和抗磨(AW)和减少摩擦的添加剂。在NH-MoS {sub} 2和CC-MoS {sub} 2的最佳浓度分别为0.5%和400 N的载荷下,NH-MoS {sub} 2 + LP和CC-MoS {与纯LP相比,sub} 2 + LP降低了约43.8%和6.3%,磨损量损失降低了约60.3和12.0%。 NH-MoS {sub} 2 + LP的边界润滑机理可以推导为改性层中长链烷基R和活性元素(S和P)形成的有效化学吸附保护膜以及含摩擦化学物质的摩擦化学反应膜。添加剂的产品。此外,NH-MoS {sub} 2 + LP中同时存在滑动和滚动摩擦,这也有助于获得良好的摩擦学性能。原创性/价值-在本文中,首先将直径为200〜300 nm的Cyanex 301改性的MoS {sub} 2纳米级空心球添加到LP中,以研究其摩擦学性能。优异的AW和减少摩擦的性能表明,该MoS {sub} 2中空球体产品是良好的油添加剂,此处提供的基本数据对其将来的进一步工业应用将是有用的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号