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首页> 外文期刊>Tribology letters >Effect of Mechanochemically Functionalized Multilayer Graphene on the Tribological Properties of Silicon Carbide/Graphene Nanocomposites in Aqueous Environment
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Effect of Mechanochemically Functionalized Multilayer Graphene on the Tribological Properties of Silicon Carbide/Graphene Nanocomposites in Aqueous Environment

机译:机械化学官能化多层石墨烯对含水环境中碳化硅/石墨烯纳米复合材料的摩擦学性质的影响

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摘要

Dry milling of graphite in a ball mill represents a versatile one-step mechanochemical process for fabricating mechanochemically functionalized multilayer graphene (MG) bearing different functional groups. The variation of the milling parameters enables to control particle size, shape, functionality, specific surface area, and dispersability of the MG functional fillers. In this study, MG was used as functional nanofiller for the production of SiC/MG nanocomposites. The nanocomposites exhibit significantly improved tribological behavior. The results of rotating pin on disc sliding tests show that with SiC/MG a noticeable improvement of friction and wear behavior under water-lubricated conditions like in slide bearings and face seals can be achieved. Sliding friction systems with the variant SiC + 2% MG-CO2-120 h appear to have the most promising tribological properties, due to the reduced size of the homogeneously distributed graphite particles, which promote the formation of advantageous surface states.
机译:球磨机中石墨的干磨为制造轴承不同官能团的机械化学官能化多层石墨烯(Mg)的多功能一步机械化学方法。铣削参数的变化能够控制MG功能填料的粒度,形状,功能,比表面积和可分散性。在该研究中,Mg被用作用于生产SiC / Mg纳米复合材料的功能纳米孔。纳米复合材料表现出显着提高的摩擦学行为。旋转销在盘滑动试验上的结果表明,在水润滑条件下,用SiC / mg表示摩擦和磨损行为的显着改善,如在滑动轴承和面部密封上。具有变体SiC + 2%Mg-CO2-120 H的滑动摩擦系统似乎具有最有希望的摩擦学特性,由于均匀分布的石墨颗粒的尺寸减小,这促进了有利的表面状态的形成。

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