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Tribological properties of nanocomposite Cr-Mo-Si-N coatings at elevated temperature through silicon content modification

机译:纳米复合铬CR-MO-Si-N涂层在升高温度下硅含量改性的摩擦学特性

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CrMoN coatings has been found to have superior mechanical and tribological properties, such as high hardness, low friction due to the solid solution strengthening and the formation of lubricating molybdenum oxide. In this study, the mechanical and tribological properties of CrMoN with various Si contents were investigated. With Si contents ranged from 0 at.% to 11.1 at.%, the quaternary Cr-Mo-Si-N coatings were deposited on silicon wafer and Inconel 718 by RF magnetron sputter. Through nanoindentation, the hardness and the H-3/E-circle 2 ratio of CrMo-Si-N coatings were obtained. The results showed that mechanical characteristics in Cr-Mo-Si-N coatings were strongly influenced by Si contents. The Cr-Mo-Si-N coating exhibited highest values in hardness and H-3/E-circle 2 ratio with 7.5 at.% Si doped, in which columnar grains turned into nanocomposite structure. The strengthening mechanism of nanocomposite structure was attributed to grain refinement and prevention of direct penetration of cracks. Futhermore, tribological behavior of Cr-Mo-Si-N coatings was investigated by ball-on-disc tribometer in atmosphere at 750 degrees C and 800 degrees C. The results indicated that the tribological properties of Cr-Mo-Si-N coatings at 750 degrees C could be significantly improved with the Si addition due to protective oxide formation on wear tracks and the cooperation of MoO3 as solid lubricant. At 800 degrees C, the liquidui MoO3 formed and played an important part in the decline of friction coefficient as compared to that of 750 degrees C. At the elevated temperature, MoO3 contributed to low friction coefficient, while the low wear rate was owing to the presence of anti-wear oxide and the nanocomposite structure. With 7.5 at.% Si doping, the Cr-Mo-Si-N coatings showed superior mechanical and tribological characteristics, leading to potential applications for wearproof and self-lubricating dry cutting tools at elevated temperature.
机译:已经发现蓖麻涂层具有优异的机械和摩擦学性质,例如高硬度,由于固体溶液强化和润滑钼的形成而导致的低摩擦。在这项研究中,研究了具有各种Si含量的CrMon的机械和摩擦学特性。 Si含量为0.%至11.1 at。%,通过RF磁控溅射在硅晶片和Inconel 718上沉积季铵化合物Cr-Mo-Si-N涂层。通过纳米indentation,获得CrMO-Si-N涂层的硬度和H-3 / E圆2比。结果表明,CR-MO-Si-N涂层中的机械特性受Si含量的强烈影响。 Cr-Mo-Si-N涂层在硬度和H-3 / E圆2的比例中表现出最高值,与7.5.%Si掺杂,其中柱状晶粒变成纳米复合材料结构。纳米复合结构的强化机制归因于晶粒细化和预防裂缝直接渗透。在750℃和800℃的大气中,在大气中,在圆盘摩擦计中研究了CR-Mo-Si-N涂层的摩擦学行为。结果表明CR-Mo-Si-N涂层的摩擦学特性由于耐磨轨道上的保护氧化物形成和MOO3作为固体润滑剂的合作,可以显着改善750℃。在800摄氏度下,与750℃的升高温度相比,液体MOO3形成并在摩擦系数下降的重要组成部分中,MOO3导致低摩擦系数,而低磨损率造成的低摩擦系数抗涂氧化物的存在和纳米复合结构。 7.5 AT。%SI掺杂,CR-MO-Si-N涂层显示出优异的机械和摩擦学特性,导致耐磨和自润滑干切削工具在升高温度下的潜在应用。

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