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Regular Papers

Assessment and modelling of isothermal forging of intermetallic compounds Part 1 – TiAl

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Pages 697-704 | Published online: 02 Dec 2013

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Read on this site (4)

J. Jia. (2001) Temperature control of TiAl melt during induction skull melting. Materials Science and Technology 17:11, pages 1434-1440.
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J.C.F. Millett, J.W. Brooks & I.P. Jones. (2001) Assessment and modelling of isothermal forging of intermetallic compounds Part 4 – NiAl. Materials Science and Technology 17:7, pages 795-801.
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J.C.F. Millett, J.W. Brooks & I.P. Jones. (2000) Assessment and modelling of isothermal forging of intermetallic compounds. Part 3 – Ni3Al. Materials Science and Technology 16:9, pages 1041-1048.
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J.C.F. Millett, J.W. Brooks & I.P. Jones. (2000) Assessment and modelling of isothermal forging of intermetallic compounds Part 2 – Ti3 Al. Materials Science and Technology 16:6, pages 617-624.
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Articles from other publishers (11)

Sean Peters, Marcos Perez & Paul Blackwell. (2023) Integrating HIP and homogenisation heat treatment and its effect on the workability of a conventional peritectic TiAl alloy. Intermetallics 158, pages 107884.
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Markus Bambach, Irina Sizova, Alexander Sviridov, Johan Stendal & Martin Günther. (2018) Batch Processing in Preassembled Die Sets—A New Process Design for Isothermal Forging of Titanium Aluminides. Journal of Manufacturing and Materials Processing 2:1, pages 1.
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Xuewen Li, Hongfei Sun, Peng Zhang & Wenbin Fang. (2014) The effect of strain on dynamic recrystallization of PM Ti–45Al–10Nb intermetallics during isothermal forging. Intermetallics 55, pages 90-94.
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Helmut Clemens & Wilfried Smarsly. (2011) Light-Weight Intermetallic Titanium Aluminides – Status of Research and Development. Advanced Materials Research 278, pages 551-556.
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M. Mulyadi, M.A. Rist, L. Edwards & J.W. Brooks. (2006) Parameter optimisation in constitutive equations for hot forging. Journal of Materials Processing Technology 177:1-3, pages 311-314.
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K. Xia. 2005. The Deformation and Processing of Structural Materials. The Deformation and Processing of Structural Materials 164 202 .
J.C.F. Millett, N.K. Bourne, G.T. GrayIIIIII & I.P. Jones. (2002) The response of TiAl based alloys to one-dimensional shock loading. Acta Materialia 50:19, pages 4801-4811.
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António Duarte, Filomena Viana, Manuel F. Vieira & H.M.C. Santos. (2002) Thermo-Mechanical Processing of a Ti 49.5Al 1.25Ag Alloy. Key Engineering Materials 230-232, pages 23-26.
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H. Kestler & H. Clemens. 2002. Titan und Titanlegierungen. Titan und Titanlegierungen 369 405 .
J. C. F. Millett, N. K. Bourne & I. P. Jones. (2001) Shock induced mechanical response of a γ-TiAl alloy. Journal of Applied Physics 89:5, pages 2566-2570.
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Jeremy Millett, George T. (Rusty) GrayIIIIII & Neil Bourne. (2000) The shock Hugoniot of the intermetallic alloy Ti–46.5Al–2Nb–2Cr. Journal of Applied Physics 88:6, pages 3290-3294.
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