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Study on the tribological properties of surfactant-modified MoS{sub}2 micrometer spheres as an additive in liquid paraffin

机译:表面活性剂修饰的MoS {sub} 2微米球体在液体石蜡中的添加剂的摩擦学性能研究

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摘要

Tribological properties of MoS{sub}2 micrometer spheres modified by self-prepared surfactant as an additive in liquid paraffin (LP) are studied and compared with those of the commercial colloidal MoS{sub}2 on a four-ball tester and an Optimol SRV oscillating friction and wear tester. The worn surfaces are examined with SEM and XPS, respectively. Results show that MoS{sub}2 micrometer sphere is a much better extreme-pressure additive and anti-wear and friction-reducing additive in LP than the commercial colloidal MoS{sub}2. The boundary lubrication mechanism can be deduced as an effective chemical adsorption protective film formed by the long chain alkyl and active elements (S and N) in the prepared surfactant and tribochemical reaction film composed of the tribochemical reaction products of the additive. Moreover, sliding and rolling frictions exist simultaneously in the MoS{sub}2 micrometer spheres/LP lubricating system, which also do more contributions to the good tribological properties.
机译:研究了在液体石蜡(LP)中自备表面活性剂改性的MoS {sub} 2微米球的摩擦学性能,并与商业胶体MoS {sub} 2在四球测试仪和Optimol SRV上的摩擦学性能进行了比较。振动摩擦磨损测试仪。分别用SEM和XPS检查磨损的表面。结果表明,与商业胶体MoS {sub} 2相比,MoS {sub} 2微米球是LP中更好的极压添加剂和抗磨减磨添加剂。边界润滑机理可以推导为由长链烷基和活性元素(S和N)在所制备的表面活性剂和由添加剂的摩擦化学反应产物组成的摩擦化学反应膜中形成的有效化学吸附保护膜。此外,MoS {sub} 2微米球/ LP润滑系统中同时存在滑动和滚动摩擦,这也为良好的摩擦学性能做出了更多贡献。

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