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Articles

Production of components by hot isostatic pressing of nickel-base superalloy powders

Pages 388-395 | Published online: 19 Jul 2013

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David M. Collins, Neil D’Souza, Chinnapat Panwisawas, Chrysanthi Papadaki, Geoff D. West, Aleksander Kostka & Paraskevas Kontis. (2020) Spinodal decomposition versus classical γ′ nucleation in a nickel-base superalloy powder: An in-situ neutron diffraction and atomic-scale analysis. Acta Materialia 200, pages 959-970.
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B. Sreenu, Rajdeep Sarkar, S.S. Satheesh Kumar, Subhradeep Chatterjee & G. Appa Rao. (2020) Microstructure and mechanical behaviour of an advanced powder metallurgy nickel base superalloy processed through hot isostatic pressing route for aerospace applications. Materials Science and Engineering: A 797, pages 140254.
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Agnieszka M. Wusatowska-Sarnek, Gautam Ghosh, Gregory B. Olson, Martin J. Blackburn & Mark Aindow. (2011) Characterization of the microstructure and phase equilibria calculations for the powder metallurgy superalloy IN100. Journal of Materials Research 18:11, pages 2653-2663.
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Agnieszka M. Wusatowska-Sarnek, Martin J. Blackburn & Mark Aindow. (2003) Techniques for microstructural characterization of powder-processed nickel-based superalloys. Materials Science and Engineering: A 360:1-2, pages 390-395.
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G.Appa Rao, Mahendra Kumar, M. Srinivas & D.S. Sarma. (2003) Effect of standard heat treatment on the microstructure and mechanical properties of hot isostatically pressed superalloy inconel 718. Materials Science and Engineering: A 355:1-2, pages 114-125.
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E. I. Starovoitenko, G. S. Garibov, V. I. Kostyukov, E. P. Kratt & I. V. Molchanov. (1980) Investigation of thermal processes in the hot hydrostatic pressing of parts from nickel heat-resisting alloy powders. Part I. Soviet Powder Metallurgy and Metal Ceramics 19:9, pages 597-600.
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