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Articles

Development of microstructure in isothermally forged Nimonic alloy AP1

Pages 1181-1188 | Published online: 02 Dec 2013

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M. Kessler, R. Hartl, A. Fuchs & M. F. Zaeh. (2021) Simulation of rotary friction welding using a viscoelastic Maxwell model. Science and Technology of Welding and Joining 26:1, pages 68-74.
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L B Yang, J-C Gebelin & R C Reed. (2011) Modelling of inertia welding of IN718 superalloy. Materials Science and Technology 27:8, pages 1249-1264.
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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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J.C.F. Millett, J.W. Brooks & I.P. Jones. (1999) Assessment and modelling of isothermal forging of intermetallic compounds Part 1 – TiAl. Materials Science and Technology 15:6, pages 697-704.
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Articles from other publishers (10)

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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Jeffery W. BrooksS. Tin & R.P. Guest. (2007) The Validation of Microstructural Prediction in Nickel Superalloys. Materials Science Forum 539-543, pages 3064-3069.
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N. Ridley, P.S. Bate & B. Zhang. (2005) Material modelling data for superplastic forming optimisation. Materials Science and Engineering: A 410-411, pages 100-104.
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Martin Jackson, Richard Dashwood, Harvey Flower & Leo Christodoulou. (2005) The microstructural evolution of near beta alloy Ti-10V-2Fe-3Al during subtransus forging. Metallurgical and Materials Transactions A 36:5, pages 1317-1327.
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J.H. Beynon & C.M. Sellars. 2005. Metalworking: Bulk Forming. Metalworking: Bulk Forming 660 670 .
S. Rhaipu, M. L. H. Wise & P. S. Bate. (2002) Microstructural gradients in the superplastic forming of Ti-6Al-4V. Metallurgical and Materials Transactions A 33:1, pages 93-100.
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J W Brooks & T J Sabin. (2005) A comparison of the macromodel and neural network approaches for the prediction of microstructural evolution during hot forging. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture 215:7, pages 915-925.
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M R Winstone, A Partridge & J W Brooks. (2016) The contribution of advanced high-temperature materials to future aero-engines. Proceedings of the Institution of Mechanical Engineers, Part L: Journal of Materials: Design and Applications 215:2, pages 63-73.
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Z.M Hu & T.A Dean. (2001) Aspects of forging of titanium alloys and the production of blade forms. Journal of Materials Processing Technology 111:1-3, pages 10-19.
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Z M Hu, J W Brooks & T A Dean. (2005) The interfacial heat transfer coefficient in hot die forging of titanium alloy. Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science 212:6, pages 485-496.
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