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Research on microstructure properties of the TiC/Ni-Fe-Al coating prepared by laser cladding technology

机译:激光熔覆TiC / Ni-Fe-Al涂层的组织性能研究

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In this paper, the laser cladding method was used to preparation the TiC reinforced Ni-Fe-Al coating on the Ni base superalloy. The Ti/Ni-Fe-Al powder was preset on the Ni base superalloy and the powder layer thickness is 0.5mm. A fiber laser was used the melting Ti/Ni-Fe-Al powder in an inert gas environment. The shape of the cladding layer was tested using laser scanning confocal microscope (LSCM) under different cladding parameters such as the laser power, the melting velocity and the defocused amount. The microstructure, the micro-hardness was tested by LSCM, SEM, Vickers hardness tester. The test result showed that the TiC particles was distributed uniformly in the cladding layer and hardness of the cladding layer was improved from 180HV to 320HV compared with the Ni-Fe-Al cladding layer without TiC powder reinforced, and a metallurgical bonding was produced between the cladding layer and the base metal. The TiC powder could make the Ni-Fe-Al cladding layer grain refining, and the more TiC powder added in the Ni-Fe-Al powder, the smaller grain size was in the cladding layer.
机译:本文采用激光熔覆法在Ni基高温合金上制备TiC增强Ni-Fe-Al涂层。 Ti / Ni-Fe-Al粉末预设在Ni基高温合金上,粉末层厚度为0.5mm。使用光纤激光器在惰性气体环境中熔化Ti / Ni-Fe-Al粉末。使用激光扫描共聚焦显微镜(LSCM)在不同的包层参数(例如激光功率,熔化速度和散焦量)下测试包层的形状。用LSCM,SEM,维氏硬度计对组织,显微硬度进行了测试。试验结果表明,与不添加TiC粉末的Ni-Fe-Al包层相比,TiC颗粒均匀分布在包层中,包层的硬度从180HV提高到320HV,在包层之间产生了冶金结合。覆层和贱金属。 TiC粉末可以细化Ni-Fe-Al包覆层的晶粒,Ni-Fe-Al粉末添加的TiC粉末越多,包覆层的晶粒尺寸越小。

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