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Original Articles

Prismatic and basal slip in Ti3Al II. Dislocation interactions and cross-slip processes

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Pages 81-99 | Received 22 Mar 1995, Accepted 02 Jun 1995, Published online: 27 Sep 2006

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D. Caillard & J. L. Martin. (2005) Dislocation motion controlled by interactions with crystal lattice: modelling and experiments. International Materials Reviews 50:6, pages 366-384.
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Qing-Xiang Pei, M.H. Jhon, Siu Sin Quek & Zhaoxuan Wu. (2021) A systematic study of interatomic potentials for mechanical behaviours of Ti-Al alloys. Computational Materials Science 188, pages 110239.
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A. N. Mokrushina, V. A. Plotnikov, B. F. Dem’yanov & S. V. Makarov. (2019) Substructure of Intermetallic Thin-Film Cu3Sn. Technical Physics 64:6, pages 853-857.
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Bin Zhu, Xiangyi Xue, Hongchao Kou, Xiaolei Li & Jinshan Li. (2018) Effect of microstructure on the fracture toughness of multi-phase high Nb-containing TiAl alloys. Intermetallics 100, pages 142-150.
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Dai-Xiu Wei, Yuichiro Koizumi & Akihiko Chiba. (2017) Discontinuous yielding and microstructural evolution of Ti-40 at.% Al alloy compressed in single α-hcp phase region. Journal of Alloys and Compounds 693, pages 1261-1276.
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Dai-Xiu Wei, Yuichiro Koizumi, Makoto Nagasako & Akihiko Chiba. (2017) Refinement of lamellar structures in Ti-Al alloy. Acta Materialia 125, pages 81-97.
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P.O. Tympel, T.C. Lindley, E.A. Saunders, M. Dixon & D. Dye. (2016) Influence of complex LCF and dwell load regimes on fatigue of Ti–6Al–4V. Acta Materialia 103, pages 77-88.
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Dai-Xiu Wei, Yuichiro Koizumi, Hiroaki Nishiyama, Akinori Yamanaka, Masahiko Yoshino, Shinpei Miyamoto, Kyosuke Yoshimi & Akihiko Chiba. (2014) Nanoplastic deformation on Ti–39 at.% Al single crystals for manipulation of every single γ lamella. Acta Materialia 76, pages 331-341.
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Marc Legros. (2014) In situ mechanical TEM: Seeing and measuring under stress with electrons. Comptes Rendus. Physique 15:2-3, pages 224-240.
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L E Karkina & L I Yakovenkova. (2012) Dislocation core structure and deformation behavior of Ti 3 Al . Modelling and Simulation in Materials Science and Engineering 20:6, pages 065003.
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Fritz Appel, Jonathan David Heaton Paul & Michael Oehring. 2011. Gamma Titanium Aluminide Alloys. Gamma Titanium Aluminide Alloys 71 124 .
M. Legros, D.S. Gianola & C. Motz. (2011) Quantitative In Situ Mechanical Testing in Electron Microscopes . MRS Bulletin 35:5, pages 354-360.
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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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L. E. Kar’kina, O. A. Elkina & L. I. Yakovenkova. (2008) Dislocation structure of intermetallic Ti3Al subjected to high-temperature deformation. Physics of the Solid State 50:5, pages 832-838.
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V. Vitek & V. Paidar. 2008. A Tribute to F.R.N. Nabarro. A Tribute to F.R.N. Nabarro 439 514 .
L. I. Yakovenkova & L. E. Kar’kina. (2007) Theoretical and experimental study of processes of deformation and fracture in single-crystal Ti3Al oriented for the basal slip. The Physics of Metals and Metallography 103:6, pages 531-554.
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Marc Legros, Alain Couret & Daniel Caillard. (2006) Comparison of glide mechanisms in hcp Ti and Ti3Al. Journal of Materials Science 41:9, pages 2647-2657.
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A. Couret & D. Caillard. 2006. Encyclopedia of Materials: Science and Technology. Encyclopedia of Materials: Science and Technology 1 14 .
K. Kishida, Y. Takahama & H. Inui. (2005) c-axis compression twinning in an off-stoichiometric compound Ti3Al with the D019 structure. Materials Science and Engineering: A 400-401, pages 339-344.
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K. Kishida, Y. Takahama & H. Inui. (2004) Deformation twinning in single crystals of a D019 compound with an off-stoichiometric composition (Ti–36.5at.%Al). Acta Materialia 52:16, pages 4941-4952.
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L. I. Yakovenkova, L. E. Karkina & M. Ya. Rabovskaya. (2003) Superdislocation core structure in pyramidal slip planes and temperature anomalies of Ti3Al intermetallic deformation behavior. Technical Physics 48:10, pages 1289-1295.
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L. I. Yakovenkova, L. E. Karkina & M. Ya. Rabovskaya. (2003) Superdislocation core structure in type I and type II pyramidal planes of Ti3Al intermetallic: Glissile dislocations and dislocation barriers. Technical Physics 48:10, pages 1280-1288.
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K. Hagihara, T. Nakano & Y. Umakoshi. (2003) Plastic deformation behavior of oriented Ni3Sn crystals with D019 structure. Scripta Materialia 48:5, pages 577-581.
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L. I. Yakovenkova, L. E. Karkina & M. Ya. Rabovskaya. (2003) The atomic structure of the $$1/3\langle 2\overline 1 \overline 1 0\rangle $$ superdislocation core and prismatic slip in Ti3Al. Technical Physics 48:1, pages 56-62.
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. 2003. Thermally Activated Mechanisms in Crystal Plasticity. Thermally Activated Mechanisms in Crystal Plasticity 323 360 .
M. Legros & D. Caillard. (2001) In situ observations of unusual dislocation mechanisms in the intermetallic alloy Ti 3 Al . Journal of Microscopy 203:1, pages 90-98.
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S. Lay, M. Loubradou & R. Bonnet. (2000) Atomic Structures of Linear Singularities at Close-Packed {111}??(0001)?2 Interfaces in a 60Ti-40Al (at%) Alloy. physica status solidi (a) 178:2, pages 681-700.
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X. Feaugas. (1999) On the origin of the tensile flow stress in the stainless steel AISI 316L at 300 K: back stress and effective stress. Acta Materialia 47:13, pages 3617-3632.
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Y. Koizumi, T. Nakano & Y. Umakoshi. (1998) Formation and stability of saturated bundled structure (SBS) in Ti3Al single crystals cyclically deformed by double prism slip. Acta Materialia 46:13, pages 4743-4754.
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Y. Minonishi, M. Legros & D. Caillard. (2011) Slip of c + a/2 Dislocations in Ti 3 Al Single Crystals Strained in Tension Along the C-Axis . MRS Proceedings 460.
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