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Enhanced surface layers by laser cladding and ion sulfurization processing towards improved wear-resistance and self-lubrication performances

机译:通过激光熔覆和离子硫化处理增强了表面层,从而提高了耐磨性和自润滑性能

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摘要

Enhanced surface layers with improved wear-resistance and self-lubrication performances were prepared by means of laser cladding and ion sulfurization processing. The microstructure, element distribution, phase composition, valence states, microhardness and wear resistance of the composited layers were investigated. The results show that Ni-based cladding coating is composed of gamma-(Fe, Ni), Cr2C3, M23C6, M3C type carbides as well as a large number of dislocations and stacking fault in the austenite grains. FeS forms form on the surface of cladding Ni-based coating by ion sulfurizing treatment. Microhardness of Ni-based cladding coating reaches to 600HV(0.1) resulting from the combined effects of ultrafine dendrites and solid solution strengthening and dislocations strengthening, whereas microhardness of the composite layer decrease slightly near the surface (about 470HV(0.1)). Due to the existance of FeS film both the wear mass loss and friction coefficient of the composite layers decrease dramaticlly. Moreover, there is a slight scratch on the worn surface of laser cladding-ion sulfurizing composite layer, while worn mechanism of medium carbon steel is serious abrasion along with long and deep grooves and fatigue wear occurs on the surface of Ni-based cladding coating.
机译:通过激光熔覆和离子硫化工艺制备了具有改善的耐磨性和自润滑性能的增强表面层。研究了复合层的显微组织,元素分布,相组成,价态,显微硬度和耐磨性。结果表明,Ni基熔覆层由γ-(Fe,Ni),Cr2C3,M23C6,M3C型碳化物以及奥氏体晶粒中的大量位错和堆垛层错组成。 FeS通过离子硫化处理在覆层Ni基涂层的表面形成。镍基熔覆层的显微硬度达到600HV(0.1),这是由于超细枝晶与固溶强化和位错强化的共同作用所致,而复合层的显微硬度在表面附近略有降低(约470HV(0.1))。由于存在FeS膜,复合层的磨损质量损失和摩擦系数均显着降低。此外,激光熔覆-离子硫化复合层的磨损表面有轻微的划痕,而中碳钢的磨损机理是严重的磨损以及长而深的沟槽,并且镍基熔覆层的表面发生疲劳磨损。

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