Effect of Mn Content on Microstructure and Mechanical Properties of Weld Metal During High Heat Input Welding Processes

Author:

Song F. Y.,Shi M. H.,Wang P.,Zhu F. X.,Misra R. D. K.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference18 articles.

1. H. Kawano, M. Shibata, S. Okano, Y. Kobayashi, Y. Okazaki, and H. Hatano, TMCP Steel Plate with Excellent HAZ Toughness for High-rise Buildings, Kobe Steel Eng. Rep., 2004, 54(2), p 110–113

2. T. Yamashita, J. Shimamura, K. Oi, M. Nagoshi, K. Oikawa, and K. Ishida, Grain Refinement of Heat Affected Zone in High Heat Input Welding by Liquid Phase Pinning of Oxy-Sulfide, Tetsu Hagane., 2014, 100(3), p 397–405

3. M. Kaneko, M. Izumi, N. Furukawa, and K. Abe, Development of Thick YP460 MPa Class Steel Plate for Large Heat-input Welding for Very Large Containerships, Kobe Steel Eng. Rep., 2008, 58(1), p 39–41

4. Y. Muranishi, Highly-efficient High Heat Input Submerged Arc Welding Process, Kobe Steel Eng. Rep., 2013, 63(1), p 27–31

5. Y. Omiya, H. Nako, Y. Okazaki, and H. Hatano, Microstructure Control Technology for HAZ in High-heat-input Welding, J. Jpn. Weld. Soc., 2012, 81(1), p 16–25

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