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Mechanical and tribological properties of plasma sprayed graphene nanosheets/Al2O3+13 wt%TiO2 composite coating

机译:等离子体喷涂石墨烯纳米烯片/ Al2O3 + 13wt%TiO2复合涂层的机械和摩擦学性能

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Graphene nanosheets/Al2O3+13 wt%TiO2 (GNs/AT-13) composite coatings were prepared by plasma spraying. The tribological test was applied on a ball-on-disc tribometer under dry sliding condition, and the friction coefficient and wear rate of the GNs/AT-13 coating decreased by similar to 13% and similar to 19%, respectively. A graphene-containing transfer layer was confirmed to exist on the wear scar surface, using energy dispersive spectrometer (EDS) and Raman spectroscopy, which might act as the protective and lubricating layer at the friction interface. Considerable improvements have been observed in the mechanical properties of the GNs/AT-13 coating using Rockwell and Vickers indentors Besides, a denser microstructure was observed in the GNs/AT-13 coating. These indicate that GNs is a promising nanofiller for ceramic coating.
机译:通过等离子体喷涂制备石墨烯纳米片/ Al 2O3 + 13wt%TiO 2(GNS / AT-13)复合涂层。 在干滑动条件下施加摩擦学检验,在干燥滑动条件下施加在圆盘摩擦计上,并且GNS / AT-13涂层的摩擦系数和磨损率降低,同样下降至13%且类似于19%。 使用能量分散光谱仪(EDS)和拉曼光谱法确认含石墨烯的转移层存在于耐磨瘢痕表面上,这可能用作摩擦界面处的保护和润滑层。 在GNS / AT-13涂层的机械性能下,使用ROCKWELL和VICKERS内部的机械性能观察到相当大的改进,在GNS / AT-13涂层中观察到更密集的微观结构。 这些表明GNS是用于陶瓷涂层的有希望的纳米填充物。

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