期刊论文详细信息
Nuclear Engineering and Technology
Tensile and impact toughness properties of various regions of dissimilar joints of nuclear grade steels
S. Malarvizhi1  K. Karthick1  V. Balasubramanian1  S.A. Krishnan2  G. Sasikala3  Shaju K. Albert3 
[1] Department of Manufacturing Engineering, Faculty of Engineering and Technology, Annamalai University, Annamalai Nagar 608002, Tamil Nadu, India;Materials Technology Division, Homi Bhabha National Institute (HBNI), Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam 603 102, Tamil Nadu, India;Materials Technology Division, Indira Gandhi Centre for Atomic Research (IGCAR), Kalpakkam 603 102, Tamil Nadu, India;
关键词: Austenitic Stainless Steel;    Dissimilar Joint;    Ferritic Steel;    Impact Toughness;    Shielded Metal Arc Welding;    Tensile Properties;   
DOI  :  10.1016/j.net.2017.10.003
来源: DOAJ
【 摘 要 】

Modified 9Cr-1Mo ferritic steel is a preferred material for steam generators in nuclear power plants for their creep strength and good corrosion resistance. Austenitic stainless steels, such as type 316LN, are used in the high temperature segments such as reactor pressure vessels and primary piping systems. So, the dissimilar joints between these materials are inevitable. In this investigation, dissimilar joints were fabricated by the Shielded Metal Arc Welding (SMAW) process with Inconel 82/182 filler metals. The notch tensile properties and Charpy V-notch impact toughness properties of various regions of dissimilar metal weld joints (DMWJs) were evaluated as per the standards. The microhardness distribution across the DMWJs was recorded. Microstructural features of different regions were characterized by optical and scanning electron microscopy. Inhomogeneous notch tensile properties were observed across the DMWJs. Impact toughness values of various regions of the DMWJs were slightly higher than the prescribed value. Formation of a carbon-enriched hard zone at the interface between the ferritic steel and the buttering material enhanced the notch tensile properties of the heat-affected-zone (HAZ) of P91. The complex microstructure developed at the interfaces of the DMWJs was the reason for inhomogeneous mechanical properties.

【 授权许可】

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