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Research Articles

Resistance spot welding of Nimonic 263 nickel-based superalloy: microstructure and mechanical properties

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Pages 28-36 | Received 11 Feb 2019, Accepted 24 Mar 2019, Published online: 07 Apr 2019

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Read on this site (2)

Majid Pouranvari. (2021) Critical review on fusion welding of magnesium alloys: metallurgical challenges and opportunities. Science and Technology of Welding and Joining 26:8, pages 559-580.
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Jiangping Yu, Donghong Wang, Dayong Li, Ding Tang, Guoliang Zhu, Anping Dong, Da Shu & Yinghong Peng. (2019) Process parameter effects on solidification behavior of the superalloy during investment casting. Materials and Manufacturing Processes 34:15, pages 1726-1736.
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Articles from other publishers (5)

Yaodong Cen, Lin Chen & Xiao Ma. (2023) Characteristics and Weldability of Resistance Plug Welding of Dissimilar Steels. Journal of Wuhan University of Technology-Mater. Sci. Ed. 38:6, pages 1463-1471.
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B. Schulz, T. Leitner & S. Primig. (2023) In-situ observation of the incipient melting of borides and its effect on the hot-workability of Ni-based superalloys. Journal of Alloys and Compounds 956, pages 170324.
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Panagiotis Stavropoulos, Kyriakos Sabatakakis, Alexios Papacharalampopoulos & Dimitris Mourtzis. (2021) Infrared (IR) quality assessment of robotized resistance spot welding based on machine learning. The International Journal of Advanced Manufacturing Technology 119:3-4, pages 1785-1806.
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M. Bemani & M. Pouranvari. (2020) Microstructure and mechanical properties of dissimilar nickel-based superalloys resistance spot welds. Materials Science and Engineering: A 773, pages 138825.
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Jiangping Yu, Donghong Wang, Dayong Li, Ding Tang, Guoliang Zhu, Anping Dong, Da Shu & Yinghong Peng. (2019) Physical simulation of investment casting for GTD-222 Ni-based superalloy processed by controlled cooling rates. The International Journal of Advanced Manufacturing Technology 105:7-8, pages 3531-3542.
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