Effect of Keyhole Gas Tungsten Arc Welding and Post-welding Heat Treatment on Microstructure and Hardness of Inconel 740H
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,Mechanics of Materials,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s11665-023-08831-3.pdf
Reference33 articles.
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2. D.H. Bechetti, J.N. DuPont, J.J. De Barbadillo, B.A. Baker, and M. Watanabe, Microstructural Evolution of INCONEL® Alloy 740H® Fusion Welds During Creep, Metall. Mater. Trans. A, 2015, 46(2), p 739–755.
3. D.H. Bechetti, J.N. DuPont, J.J. de Barbadillo, and B.A. Baker, Homogenization and Dissolution Kinetics of Fusion Welds in INCONEL® Alloy 740H®, Metall. Mater. Trans. A, 2014, 45(7), p 3051–3063.
4. D. Xiao, H. Jing, L. Xu, L. Zhao, and Y. Han, Microstructure and Damage Evolution of Inconel 740H Welded Joint during Creep Process at 750 °C, J. Mater. Eng. Perform., 2021, 30(6), p 4562–4571.
5. B. Mondal, M. Gao, T.A. Palmer, and T. DebRoy, Solidification Cracking of a Nickel Alloy during High-Power Keyhole Mode Laser Welding, J. Mater. Process. Technol., 2022, 305, p 117576.
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1. Inconel 740H Prepared by Additive Manufacturing: Microstructure and Mechanical Properties;Metals;2024-07-11
2. High-current gas tungsten arc welding of Ni-base superalloy Haynes 282: correlating heat input with weld profile, microstructure, hardness and indentation size effect;Materials Science and Technology;2024-04-01
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