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Study on Laser Cladding Coatings of Ni-based Alloy/TiC/ Nickel-coated Graphite on Steel Substrate

机译:钢基材Ni基合金/ TiC /镍涂层石墨的激光覆层涂层研究

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In order to improve the antiwear and antifriction performances of tribological metal surfaces for the extreme conditions, the composite coating has been fabricated on metal surfaces by the technology of laser cladding. In the experiment, Ni-based alloy, TiC and Nickel-coated graphite are used as the main ingredients of composite. The cross-sectional macrographs, microstructure, compositions, microhardness, tribological properties and the forming mechanism of the coating was tested and analyzed. Results show that laser cladding Ni60A/TiC/Nickel-coated graphite composite can obtain excellent coating with fully compact and uniform microstructure, and good interface with the substrate. The microhardness of the clad coating is over HV1000, which is five times higher than that of the steel substrate. The friction coefficient is reduced to about 0.4-0.5 in comparison with that of the steel substrate (about 0.7-0.8). At the same time, the wear resistance of the clad coating is also improved greatly.
机译:为了改善摩擦金属表面对极端条件的抗磨和抗磨损性能,通过激光包层技术在金属表面上制造了复合涂层。在实验中,使用Ni基合金,TiC和镍涂层石墨作为复合材料的主要成分。测试并分析了涂层的横截面显像,微观结构,组合物,显微硬度,摩擦学性质和成形机制。结果表明,激光熔覆Ni60A / TiC /镍涂层石墨复合材料可获得优异的涂层,具有完全紧凑且均匀的微观结构,以及与基材的良好界面。包层涂层的微硬度超过HV1000,其比钢基材高的五倍。与钢基材(约0.7-0.8)相比,摩擦系数减少到约0.4-0.5。同时,包层涂层的耐磨性也得到了大大提高。

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