首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Friction and atomic-layer-scale wear of graphitic lubricants on SiC(0001) in dry sliding
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Friction and atomic-layer-scale wear of graphitic lubricants on SiC(0001) in dry sliding

机译:石墨的摩擦和atomic-layer-scale穿润滑剂在干滑动SiC (0001)

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摘要

Sliding friction experiments on graphene grown on SiC(0001) have been performed using a combination of a microtribometer with an atomic force microscope (AFM) allowing for the investigation of atomic-scale wear. The graphene layer delaminates within 10 sliding cycles starting from substrate step edges. After run in, friction is dominated by the interaction between a changing configuration of asperities at the probe sphere and a graphitic interface layer terminating the SiC substrate. Friction varies unpredictably due to changes in the contact configuration. However, the linear relation between friction and contact area can be confirmed and a shear strength as low as a few MPa is found for the contact between ruby and the graphitic layer on SiC, which remains intact under continuous sliding.
机译:滑动摩擦实验对石墨烯生长碳化硅(0001)执行使用一个组合的microtribometer原子力显微镜(AFM)允许调查量子穿。在10滑动脱层周期开始从衬底步骤边缘。是由之间的互动改变配置探头表面微凸体的球和石墨界面层终止碳化硅衬底。不可预知的由于接触的变化配置。之间的摩擦和接触面积确认和剪切强度低至几MPa发现ruby和之间的联系碳化硅石墨层,依然完好无损在连续的滑动。

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