Keyhole TIG Welding of New Co-Lean Nickel-Based Superalloy G27
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Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-27447-3_48
Reference28 articles.
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2. Andersson J (2011) Weldability of precipitation hardening superalloys–influence of microstructure. Ph.D. thesis, Chalmers University of Technology
3. Andersson J (2018) Review of Weldability of Precipitation Hardening Ni-and Fe-Ni-Based Superalloys. In: Ott E, Liu X, Andersson J, Bi Z, Bockenstedt K, Dempster I, Groh J, Heck K, Jablonski P, Kaplan M, Nagahama D, Sudbrack C (eds) Superalloy 718 and Derivatives: Energy, Aerospace, and Industrial Applications. The Minerals, Metals & Materials Society, Pittsburgh; Springer, New York, pp 899–916
4. Cui S, Liu Z, Fang Y, Luo Z, Manladan SM, Yi S (2017) Keyhole process in K-TIG welding on 4 mm thick 304 stainless steel. J. Mater. Process. Technol. 243:217–228
5. Liu Z, Fang Y, Cui S, Luo Z, Liu W, Liu Z, Jiang Q, Yi S (2016) Stable keyhole welding process with K-TIG. J. Mater. Process. Technol. 238:65–72
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1. 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
2. Fabrication and Weldability Aspects of Ni- and Ni–Fe Based Superalloys—A Review;The Minerals, Metals & Materials Series;2023
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