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Extraordinary macroscale lubricity of sonication-assisted fabrication of MoS_2 nano-ball and investigation of in situ formation mechanism of graphene induced by tribochemical reactions

机译:超声辅助制备MoS_2纳米球的超常宏观润滑性及摩擦化学反应诱导石墨烯的原位形成机理研究

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摘要

We first fabricate MoS2 nano-ball in isopropanol using sonication-assisted method. We systematically probe the lubrication mechanism of MoS2 nano-ball in isopropanol. Hydroxylated MoS2 nano-ball could effectively reduce the contact area for GCr15 steel balls and possess superior load-capacity and make the tribosystem achieve ultra-low friction and wear under 98 or 196 N and 600 rpm. For comparison, the lubricity of tribosystem sliding in isopropanol is conducted. Interestingly, graphene layers are formed sliding under 196 N and 600 rpm, the graphene-based transfer film on GCr15 steel ball makes the lubrication condition fast transfer from mixed lubrication condition to full film lubrication condition, which results in high friction and wear. The formation mechanism of graphene is discussed and proposed in details.
机译:我们首先使用超声辅助方法在异丙醇中制备MoS2纳米球。我们系统地探讨了MoS2纳米球在异丙醇中的润滑机理。羟基化的MoS2纳米球可有效减少与GCr15钢球的接触面积,并具有出色的负载能力,并使摩擦系统在98或196 N和600 rpm的转速下具有超低摩擦和磨损。为了比较,进行了摩擦系统在异丙醇中的润滑性。有趣的是,石墨烯层是在196 N和600 rpm下滑动形成的,GCr15钢球上的石墨烯基转移膜使润滑状态从混合润滑状态快速转变为全膜润滑状态,从而导致高摩擦和磨损。详细讨论了石墨烯的形成机理。

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