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Effects of Low-Temperature Tempering on Microstructure and Properties of the Laser-Cladded AISI 420 Martensitic Stainless Steel Coating

机译:低温回火对激光包覆AISI 420马氏体不锈钢涂层微观结构及性能的影响

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Post-treatment is crucial to improve the comprehensive performance of laser-cladded martensitic stainless steel coatings. In this work, a low-temperature tempering treatment (210 °C), for the first time, was performed on the laser-cladded AISI 420 martensitic stainless steel coating. The microstructure and properties of the pre- and post-tempering specimens were carefully investigated by XRD, SEM, TEM, a micro-hardness tester, a universal material testing machine and an electrochemical workstation. The results show that the as-cladded AISI 420 stainless steel coating mainly consisted of martensite, austenite, Fe3C and M23C6 carbides. The phase constituent of the coating remained the same, however, the martensite decomposed into finer tempered martensite with the precipitation of numerous nano-sized Fe3C carbides and reverted austenite in the as-tempered specimen. Moreover, a slight reduction was found in the micro-hardness and tensile strength, while a significant increase in elongation was achieved after tempering. The fractography showed a transition from brittle fracture to ductile fracture accordingly. The as-tempered coating exhibited a striking combination of mechanical properties and corrosion resistance. This work can provide a potential strategy to enhance the overall properties of the laser-deposited Fe-based coating for industrial applications.
机译:治疗后至关重要,提高激光包覆马氏体不锈钢涂料的综合性能。在这项工作中,在激光包覆AISI 420马氏体不锈钢涂层上进行低温回火处理(210°C)。通过XRD,SEM,TEM,微硬度测试仪,通用材料试验机和电化学工作站仔细研究了预先调节的微观结构和性质。结果表明,由马氏体,奥氏体,Fe3C和M23C6碳化物组成的垫片AISI 420不锈钢涂层。涂层的相成分保持相同,但马氏体分解成细粒的钢化马氏体,随着诸如催化标本中的许多纳米尺寸Fe3C碳化物和再静脉奥氏体的沉淀。此外,在微硬度和拉伸强度中发现了轻微的还原,而回火后延长伸长率显着增加。 Fretcography表现出从脆性断裂到延展性裂缝的过渡。升温涂层表现出撞击机械性能和耐腐蚀性的结合。该工作可以提供潜在的策略,以提高用于工业应用的激光沉积的Fe基涂层的整体性质。

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