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An Assessment of the Mechanical Properties and Microstructural Analysis of Dissimilar Material Welded Joint between Alloy 617 and 12Cr Steel

机译:617和12Cr钢异种材料焊接接头的力学性能和显微组织分析。

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The most effective method to reduce CO 2 gas emission from the steam power plant is to improve its performance by elevating the steam temperature to more than 700 °C. For this, it is necessary to develop applicable materials at high temperatures. Ni-based Alloy 617 and 12Cr steel are used in steam power plants, due to their remarkable mechanical properties, high corrosion resistance, and creep strength. However, since Alloy 617 and 12Cr steel have different chemical compositions and thermal and mechanical properties, it is necessary to develop dissimilar material welding technologies. Moreover, in order to guarantee the reliability of dissimilar material welded structures, the assessment of mechanical and metallurgical properties, fatigue strength, fracture mechanical analysis, and welding residual stress analysis should be conducted on dissimilar material welded joints. In this study, first, multi-pass dissimilar material welding between Alloy 617 and 12Cr steel was performed under optimum welding conditions. Next, mechanical properties were assessed, including the static tensile strength, hardness distribution, and microstructural analysis of a dissimilar material welded joint. The results indicated that the yield strength and tensile strength of the dissimilar metal welded joint were higher than those of the Alloy 617 base metal, and lower than those of the 12Cr steel base metal. The hardness distribution of the 12Cr steel side was higher than that of Alloy 617 and the dissimilar material weld metal zone. It was observed that the microstructure of Alloy 617 HAZ was irregular austenite grain, while that of 12Cr steel HAZ was collapsed martensite grain, due to repeatable heat input during multi-pass welding.
机译:减少来自蒸汽发电厂的CO 2气体排放的最有效方法是通过将蒸汽温度提高到700°C以上来提高其性能。为此,有必要在高温下开发适用的材料。镍基合金617和12Cr钢由于其卓越的机械性能,高耐腐蚀性和蠕变强度而用于蒸汽发电厂。但是,由于617和12Cr合金钢的化学成分,热和机械性能不同,因此有必要开发不同的材料焊接技术。此外,为了保证异种材料焊接结构的可靠性,应对异种材料焊接接头进行机械和冶金性能,疲劳强度,断裂力学分析和焊接残余应力分析的评估。在这项研究中,首先,在最佳焊接条件下进行了617合金和12Cr钢之间的多道次异种材料焊接。接下来,评估了机械性能,包括静态拉伸强度,硬度分布和异种材料焊接接头的微观结构分析。结果表明,异种金属焊接接头的屈服强度和抗拉强度高于Alloy 617母材,但低于12Cr钢母材。 12Cr钢侧面的硬度分布高于合金617和异种材料焊接金属区域的硬度分布。观察到,由于在多道次焊接过程中可重复输入热量,合金617 HAZ的显微组织为不规则奥氏体晶粒,而12Cr钢HAZ的组织为塌陷马氏体晶粒。

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