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Original Article

Effect of different solution heattreatments on hot ductility of superalloysPart 2 – Allvac 718Plus

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Pages 733-741 | Received 08 May 2011, Accepted 05 Jan 2012, Published online: 12 Nov 2013

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Read on this site (2)

Bilal Hassan & Jonathan Corney. (2017) Grain boundary precipitation in Inconel 718 and ATI 718Plus. Materials Science and Technology 33:16, pages 1879-1889.
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J Andersson, G P Sjöberg, L Viskari & M Chaturvedi. (2013) Effects of different solution heat treatments on the hot ductility of superalloys. Materials Science and Technology 29:1, pages 43-53.
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Articles from other publishers (11)

Andrea Niklas, Fernando Santos, Rodolfo Gonzalez-Martinez, Pedro Pablo Rodríguez, Daniel Bernal, Alberto Cobos, Lexuri Vázquez & Pedro Álvarez. (2023) Effects of Different Si Content and Thermal Stories on the Secondary Phase Formation, Hot Ductility, and Stress Rupture Properties of Alloy 718 Investment Castings. Metallurgical and Materials Transactions A 54:7, pages 2670-2688.
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Sebastian Lech, Agnieszka M. Wusatowska-Sarnek, Krzysztof Wieczerzak & Adam Kruk. (2022) Evolution of Microstructure and Mechanical Properties of ATI 718Plus® Superalloy After Graded Solution Treatment. Metallurgical and Materials Transactions A 54:5, pages 2011-2021.
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QianYing Guo, KangKang Ji, Teng Zhang, ZhiXia Qiao, Chong Li, Jun Li, ChenXi Liu & YongChang Liu. (2022) Precipitates evolution and tensile behavior of wrought Ni-based ATI 718Plus superalloy during long-term thermal exposure. Science China Technological Sciences 65:6, pages 1283-1299.
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Yu Shen, Minqing Wang, Hui Xia, Lei Zheng, Na Ta, Ye Meng & Fenge Cui. (2021) Pseudobinary Phase Diagrams of Eutectic Reaction for Pt‐containing and Pt‐free 718Plus Alloys. Advanced Engineering Materials 23:5.
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Geeta Kumari, Carl Boehlert, S. Sankaran & M. Sundararaman. (2020) The Effects of Solutionizing Temperature on the Microstructure of Allvac 718Plus. Journal of Materials Engineering and Performance 29:6, pages 3523-3533.
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Utkudeniz Ozturk, Jose Maria Cabrera, Jessica Calvo, Abdelkrim RedjaïmiaJaâfar Ghanbaja. (2020) High-Temperature Deformation Behavior of 718Plus: Consideration of γ′ Effects. Materials Performance and Characterization 9:2, pages 20190031.
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Seyedmohammad Tabaie, Davood Shahriari, Cléa Plouze, Alexandre Devaux, Jonathan Cormier & Mohammad Jahazi. (2019) Hot ductility behavior of AD730™ nickel-base superalloy. Materials Science and Engineering: A 766, pages 138391.
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Hai Jie Zhang, Li Feng Zhang & Ya Dong Wang. (2018) Effect of Sampling Locations on Hot Ductility of Low Carbon Alloyed Steels. steel research international 89:12.
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Sukhdeep Singh, William Fransson, Joel Andersson, Anssi Brederholm & Hannu Hänninen. 2018. Proceedings of the 9th International Symposium on Superalloy 718 & Derivatives: Energy, Aerospace, and Industrial Applications. Proceedings of the 9th International Symposium on Superalloy 718 & Derivatives: Energy, Aerospace, and Industrial Applications 929 937 .
Xin Ye, Xueming Hua, Yixiong Wu & Songnian Lou. (2015) Precipitates in coarse-grained heat-affected zone of Ni-based 718 superalloy produced by tungsten inert gas welding. Journal of Materials Processing Technology 217, pages 13-20.
Crossref
Joel Andersson, Shahzad Raza, Anders Eliasson & Kumar Babu Surreddi. 2014. 8th International Symposium on Superalloy 718 and Derivatives. 8th International Symposium on Superalloy 718 and Derivatives 181 192 .

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