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The Effect of Annealing on Structure and Hardness of (Fe-Cr)-50 at. Al Coatings Synthesized by Mechanical Alloying

机译:退火对(Fe-Cr)-50的结构和硬度的影响。通过机械合金化合成的%Al涂层

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In this research, the deposition of (Fe-Cr)-50at.% Al coatings on low carbon steel was carried out by a mechanical alloying (MA) technique. The MA was performed in a shaker mill for 4 hours. Two types of Fe-Cr powders as starting material were used, high purity Fe-Cr powders: (Fe-12.5Cr)-50Al and (Fe-25Cr)-50Al, and Fe-Cr lump powder: (50FeCr)-50Al (in at.%). The coated samples were then annealed in a vacuum furnace at 700°C for lh. The characterizations of coating structure before and after annealing were studied by XRD and SEM-EDX, while the coating hardness was measured by micro-Vickers hardness tester. Before annealing, all of coating composition were composed mainly of (Fe,Cr)Al phase. After annealing, the FeAl and Fe_(0.99)Cr_(0.02)Al_(0.99) intermetallic phases was formed in the (Fe-12.5Cr)-50Al and (Fe-25Cr)-50Al coatings. In addition, Fe_2CrAlwas also found in the (Fe-25Cr)-50Al coating. Whilethe AlCr_2 intermetallic phase was detected as the main phase of (50FeCr)-50Al coating. The cross-sectional microstructure showed that the (Fe-12.5Cr)-50Al and (Fe-25Cr)-50Al coatings have a smoother structure compared to (50FeCr)-50Al coating. The annealing led to intermetallic phase formation and an increasing coating hardness.
机译:在该研究中,通过机械合金化(MA)技术沉积(Fe-Cr)-50AT。的低碳钢上的%Al涂层。 MA在振动器磨机中进行4小时。使用两种类型的Fe-Cr粉末作为起始材料,高纯度Fe-Cr粉末:(Fe-12.5cr)-50al和(Fe-25cr)-50al和Fe-Cr块粉:(50fecr)-50al(在。%)。然后将涂覆的样品在700℃下以700℃的真空炉退火。通过XRD和SEM-EDX研究了退火前后涂层结构的表征,同时通过微维克斯硬度测试仪测量涂层硬度。在退火之前,所有涂料组合物主要由(Fe,Cr)Al相。退火后,在(Fe-12.5CR)-50Al和(Fe-25Cr)-50Al涂层中形成Feal和Fe_(0.99)Cr_(0.02)Al_(0.02)金属间相。此外,Fe_2cralwas还发现(Fe-25cr)-50Al涂层。虽然Alcr_2金属间相对于(50FeCr)-50Al涂层的主相。横截面组织显示(Fe-12.5Cr)-50Al和(Fe-25Cr)-50Al -50Al涂层与(50feCr)-50Al涂层相比具有更平滑的结构。退火导致金属间相形成和增加的涂层硬度。

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