Journal of the Chinese Ceramic Society, Volume. 52, Issue 12, 3832(2024)
Interaction Mechanism Between MgO Crucible and Ni-Based Superalloy
[4] [4] CHOUDHURY A. State of the art of superalloyproduction for aerospace and other application using VIM/VAR or VIM/ESR[J]. ISIJ Int, 1992, 32(5): 563-574.
[9] [9] LI J P, ZHANG H R, GAO M, et al. Effect of vacuum level on the interfacial reactions between K417 superalloy and Y2O3 crucibles[J]. Vacuum, 2020, 182: 109701.
[10] [10] LI X, ZHAO Y D, WANG L Z, et al. Study on the stability of different refractories during the melting process of a K4169 Ni-based superalloy [J] Ceram Inter, 2023, 49(18): 29573-29583.
[11] [11] QI X D, FU L P, DU R Q, et al. Properties of various CaO-Al2O3-TiO2 refractories and their reaction behaviours in contact with Ti6Al4V melts[J]. J Alloys Compd, 2023, 959: 170599.
[12] [12] LIN C Y, SHENG N C, FAN S G, et al. Interfacial desulfurization reaction between binary Ni-Al/Ti/Ta alloy melt and CaO ceramic refractory[J]. Surf Interfaces, 2024, 44: 103718.
[13] [13] GARCIA-MICHELENA P, CHAMORRO X, HERRERO-DORCA N, et al. Effect of the crucible composition on the Inconel 718 vacuum induction melting process efficiency[J]. J Mater Res Technol, 2023, 23: 3351-3361.
[17] [17] GAO X Y, ZHANG L, QU X H, et al. Effect of interaction of refractories with Ni-based superalloy on inclusions during vacuum induction melting[J]. Int J miner Metall Mater, 2020, 27(11): 1551-1559.
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CHEN Guangyao, LIAO Houjin, DENG Shaowen, FENG Qisheng, GAO Pengyue, WANG Enhui, ZHAO Yunsong, HOU Xinmei, LI Chonghe. Interaction Mechanism Between MgO Crucible and Ni-Based Superalloy[J]. Journal of the Chinese Ceramic Society, 2024, 52(12): 3832
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Received: Jun. 3, 2024
Accepted: Jan. 2, 2025
Published Online: Jan. 2, 2025
The Author Email: Xinmei HOU (houxinmeiustb@ustb.edu.cn)