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Microstructure and Wear Resistance of Multi-Layer Ni-Based Alloy Cladding Coating on 316L SS under Different Laser Power

机译:不同激光功率下316L SS的多层Ni基合金包层涂层的组织和耐磨性

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摘要

We prepared three kinds of Ni based alloy cladding coatings on 316L stainless steel at different power levels. The microstructure of the cladding layer was observed and analyzed by XRD, metallographic microscope, and SEM. The hardness of the cladding layer was measured, and the wear resistance of it was tested by a friction instrument. The results show that the effect of laser cladding is good, and it has good metallurgical bonding with the substrate. Different microstructures such as dendritic and equiaxed grains can be observed in the cladding layer. With the increase in laser power, more equiaxed and columnar dendrites can be observed. The phase composition of the cladding layer is mainly composed of γ–Ni solid solution and some intermetallic compounds such as Ni3B, Cr5B3, and Ni17Si3. The results of EDS show that there are some differences in the distribution of C and Si between dendrites. The hardness of the cladding layer is about 600 HV0.2, which is about three times of the substrate (~200 HV0.2). Through the analysis of the wear morphology, the substrate wear is serious, there are serious shedding, mainly adhesive wear, and abrasive wear. However, the wear of the cladding layer is slight, which is abrasive wear, and there are some grooves on the surface.
机译:在不同功率水平的316L不锈钢上制作了三种基于Ni的合金包层涂层。观察覆层层的微观结构,并通过XRD,金相显微镜和SEM分析。测量包层层的硬度,并通过摩擦仪器测试其的耐磨性。结果表明,激光包层的效果良好,与基材具有良好的冶金键合。可以在包层层中观察到不同的微观结构,例如树突和等轴晶粒。随着激光功率的增加,可以观察到更多的等式和柱状树枝状。包层层的相组合物主要由γ-Ni固溶体和一些金属间化合物,例如Ni3b,Cr5b3和Ni17si3组成。 EDS的结果表明,树突之间的C和Si的分布存在一些差异。包层层的硬度约为600 hV0.2,其是底物的约三次(〜200hv0.2)。通过分析磨损形态,基板磨损严重,有严重的脱落,主要是粘性磨损和磨料磨损。然而,包层的磨损是磨削的磨损,表面上存在一些凹槽。

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