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Original Articles

Creep deformation of an aluminium alloy with intermetallic particles

Pages 943-960 | Received 05 Jun 1991, Accepted 05 Jul 1991, Published online: 20 Aug 2006

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

F. Carreño & O. A. Ruano. (1998) High temperature deformation behaviour of Al-Fe-V-Si alloys. Materials Science and Technology 14:4, pages 322-327.
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J. W. Luster, M. Thumann & R. Baumann. (1993) Mechanical properties of aluminium alloy 6061–Al2O3 composites. Materials Science and Technology 9:10, pages 853-862.
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Caspar González-Doncel & Jeff Wolfenstine. (1993) Pipe-diffusion-controlled creep under constant structure of an aluminium alloy. Philosophical Magazine Letters 67:3, pages 173-177.
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Articles from other publishers (14)

Soban Muddassir Dar & Hengcheng Liao. (2019) Creep behavior of heat resistant Al–Cu–Mn alloys strengthened by fine (θ′) and coarse (Al20Cu2Mn3) second phase particles. Materials Science and Engineering: A 763, pages 138062.
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Christian Rockenhäuser, Sina Schriever, Philipp von Hartrott, Benjamin Piesker & Birgit Skrotzki. (2018) Comparison of long-term radii evolution of the S-phase in aluminum alloy 2618A during ageing and creep. Materials Science and Engineering: A 716, pages 78-86.
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Ping Ou, Long Li, Xing-Fei Xie & Jian Sun. (2015) Steady-State Creep Behavior of Super304H Austenitic Steel at Elevated Temperatures. Acta Metallurgica Sinica (English Letters) 28:11, pages 1336-1343.
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V. A. Dudko, R. O. Kaibyshev & E. R. Salakhova. (2009) Effect of subgrain structure on the creep strength of alloy 1207. The Physics of Metals and Metallography 107:1, pages 90-95.
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T.S. Srivatsan, Satish Vasudevan, Lisa Park & R.J. Lederich. (2008) The quasi-static deformation and final fracture behavior of aluminum alloy 2219. Materials Science and Engineering: A 497:1-2, pages 270-277.
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Marsha E. van Dalen, David N. Seidman & David C. Dunand. (2008) Creep- and coarsening properties of Al–0.06at.% Sc–0.06at.% Ti at 300–450°C. Acta Materialia 56:16, pages 4369-4377.
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M.A. Muñoz-Morris, J.I. Rexach & M. Lieblich. (2005) Comparative study of Al-TiAl composites with different intermetallic volume fractions and particle sizes. Intermetallics 13:2, pages 141-149.
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R. Tewari, G. K. Dey, T. R. G. Kutty, A. K. Sengupta, S. Banerjee & N. Prabhu. (2004) Deformation behavior of Zr3Al-Nb alloys II: Indentation creep studies. Metallurgical and Materials Transactions A 35:1, pages 205-216.
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J Murken, R Höhner & B Skrotzki. (2003) Strain path dependence of the precipitate size evolution of an Al–Mg–Li alloy under combined thermal and mechanical loading. Materials Science and Engineering: A 363:1-2, pages 159-170.
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R Kaibyshev, O Sitdikov, I Mazurina & D.R Lesuer. (2002) Deformation behavior of a 2219 Al alloy. Materials Science and Engineering: A 334:1-2, pages 104-113.
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M.A Morris-Muñoz. (1999) Creep deformation of oxide-dispersion-strengthened Fe-40Al intermetallic: thermal and athermal contributions. Intermetallics 7:6, pages 653-661.
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F. Carreño & O. A. Ruano. (1998) High temperature deformation behaviour of Al-Fe-V-Si alloys. Materials Science and Technology 14:4, pages 322-327.
Crossref
P. VERMAUT & P. RUTERANA. (1995) Microstructure of a spray-formed Al/SiC composite. Journal of Microscopy 177:3, pages 387-398.
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M.A. Morris & J.C. Joye. (1995) Effect of the particle distribution on the mechanisms controlling deformation of a copper alloy at intermediate temperatures. Acta Metallurgica et Materialia 43:1, pages 69-81.
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