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Original Articles

c slip in Ti3Al

, &
Pages 1013-1026 | Received 25 Apr 1988, Published online: 20 Aug 2006

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Read on this site (8)

F. Popille & J. Douin. (1996) The dislocation microstructure in orthorhombic O Ti2AlNb deformed between room temperature and 800°C. Philosophical Magazine A 73:5, pages 1401-1418.
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D. Banerjee. (1995) Deformation of the O and α2 phases in the Ti-Al-Nb system. Philosophical Magazine A 72:6, pages 1559-1587.
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H. Inui, Y. Toda, Y. Shirai & M. Yamaguchi. (1994) Low-temperature deformation of single crystals of a DO19 compound with an off-stoichiometric composition (Ti-36·5 at.% Al). Philosophical Magazine A 69:6, pages 1161-1177.
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P. Prasad Rao & K. Tangri. (1992) Deformation behaviour of titanium aluminides at room temperature. Materials Science and Technology 8:12, pages 1117-1124.
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Y. Minonishi & M.H. Yoo. (1990) Anomalous temperature dependence of the yield stress of Ti3Al by {1121} 〈1 126〉 slip. Philosophical Magazine Letters 61:4, pages 203-208.
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J.P. A. Löfvander, S.A. Court, M.H. Loretto & H.L. Fraser. (1989) Mobility of c dislocations in Ti3, Al. Philosophical Magazine Letters 60:3, pages 111-116.
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Articles from other publishers (15)

Lin Song, Fritz Appel, Wenhao Liu, Florian Pyczak & Tiebang Zhang. (2023) {1 01} tension twins and {1 01}-{2 01}/{2 01}-{1 01} double twins in the D019 ordered hexagonal α2-Ti3Al phase . Acta Materialia 260, pages 119335.
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Donghai Li, Binbin Wang, Liangshun Luo, Xuewen Li, Jianxin Yu, Binqiang Li, Liang Wang, Yanqing Su, Jingjie Guo & Hengzhi Fu. (2022) Enhanced strength and fracture characteristics of the TiAl/Ti2AlNb laminated composite. Materials Science and Engineering: A 835, pages 142632.
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Lin Song, Fritz Appel, Florian Pyczak, Zhanbing He, Junpin Lin & Tiebang Zhang. (2022) Characterization of primary, secondary and tertiary {20 1}< 014> successive internal twins in the D019 ordered hexagonal α2-Ti3Al phase . Acta Materialia 222, pages 117391.
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Lin Song, Fritz Appel, Li Wang, Michael Oehring, Xingguo Hu, Andreas Stark, Junyang He, Uwe Lorenz, Tiebang Zhang, Junpin Lin & Florian Pyczak. (2020) New insights into high-temperature deformation and phase transformation mechanisms of lamellar structures in high Nb-containing TiAl alloys. Acta Materialia 186, pages 575-586.
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Arnas Fitzner, D.G. Leo Prakash, Joao Quinta da Fonseca, Matthew Thomas, Shu-Yan Zhang, Joe Kelleher, Pascal Manuel & Michael Preuss. (2016) The effect of aluminium on twinning in binary alpha-titanium. Acta Materialia 103, pages 341-351.
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Fritz Appel, Jonathan David Heaton Paul & Michael Oehring. 2011. Gamma Titanium Aluminide Alloys. Gamma Titanium Aluminide Alloys 71 124 .
L.E. Karkina, O.A. Elkina & L.I. Yakovenkova. (2010) Electron microscopic study of Ti3Al microstructure after deformation at 1073–1273 K. Journal of Alloys and Compounds 494:1-2, pages 223-232.
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K. Kishida, H. Inui & M. Yamaguchi. (1999) Deformation of PST crystals of a TiAl/Ti3Al two-phase alloy at 1000°C. Intermetallics 7:10, pages 1131-1139.
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D.E. Albert & G.T. GrayIIIIII. (1997) Mechanical and microstructural response of Ti-24Al-11Nb as a function of temperature and strain rate. Acta Materialia 45:1, pages 343-356.
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D.B. Allen, A.W. Thompson & M. De Graef. 1994. Hydrogen Effects in Materials. Hydrogen Effects in Materials 831 840 .
C. H. Ward. (1993) Microstructure evolution and its effect on tensile and fracture behaviour of Ti-AI-Nb α<SUB>2</SUB> intermetallics. International Materials Reviews 38:2, pages 79-101.
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L. Zhao & K. Tangri. (1991) TEM investigation on the interfacial boundaries in as-cast Ti3Al+TiAl alloy. Acta Metallurgica et Materialia 39:10, pages 2209-2224.
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P.Prasad Rao & Kris Tangri. (1991) Yielding and work hardening behaviour of titanium aluminides at different temperatures. Materials Science and Engineering: A 132, pages 49-59.
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R.S. Mishra & D. Banerjee. (1990) Microstructure and steady state creep in Ti-24Al-11Nb. Materials Science and Engineering: A 130:2, pages 151-164.
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P. M. Hazzledine & Y. Q. Sun. (2011) Dislocation Structures and Anomalous Yielding in Ordered Alloys. MRS Proceedings 213.
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