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Original Articles

High resolution determination of the core structure of 1/3⟨1120⟩ {1010} edge dislocation in titanium

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Pages 245-254 | Received 06 Jun 1982, Accepted 06 Sep 1982, Published online: 01 Dec 2006

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Read on this site (11)

Josh Kacher & Ian M. Robertson. (2016) In situ TEM characterisation of dislocation interactions in α-titanium. Philosophical Magazine 96:14, pages 1437-1447.
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M. F. Savage, J. Tatalovich & M. J. Mills. (2004) Anisotropy in the room-temperature deformation of α–β colonies in titanium alloys: role of the α–β interface. Philosophical Magazine 84:11, pages 1127-1154.
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C. Q. Chen, S. X. Li & K. Lu. (2004) Dislocation interaction with hydrides in titanium containing a low hydrogen concentration. Philosophical Magazine 84:1, pages 29-43.
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MichaelJ. Mills & Pierre Stadelmann. (1989) A study of the structure of Lomer and 60° dislocations in aluminium using high-resolution transmission electron microscopy. Philosophical Magazine A 60:3, pages 355-384.
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S. Naka, A. Lasalmonie, P. Costa & L.P. Kubin. (1988) The low-temperature plastic deformation of α-titanium and the core structure of a-type screw dislocations. Philosophical Magazine A 57:5, pages 717-740.
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M.H. Liang & D.J. Bacon. (1986) Computer simulation of dislocation cores in h.c.p. metals II. Core structure in unstressed crystals. Philosophical Magazine A 53:2, pages 181-204.
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ParB. Legrand. (1985) Structure du coeur des dislocations vis 1/3⟨1120⟩ dans le titane. Philosophical Magazine A 52:1, pages 83-97.
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Articles from other publishers (47)

Ali Rida, Satish I. Rao & Jaafar A. El-Awady. (2022) Characteristics of screw dislocations and their slip on prismatic and pyramidal planes in pure titanium from atomistic simulations . Materialia 24, pages 101503.
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Pengyang Zhao, Chen Shen, Michael F. Savage, Ju Li, Stephen R. Niezgoda, Michael J. Mills & Yunzhi Wang. (2019) Slip transmission assisted by Shockley partials across interfaces in Ti-alloys . Acta Materialia 171, pages 291-305.
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Nermine Chaari, David Rodney & Emmanuel Clouet. (2019) Oxygen-dislocation interaction in titanium from first principles. Scripta Materialia 162, pages 200-203.
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B. Barkia, J.P. Couzinié, S. Lartigue-Korinek, I. Guillot & V. Doquet. (2017) In situ TEM observations of dislocation dynamics in α titanium: Effect of the oxygen content. Materials Science and Engineering: A 703, pages 331-339.
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E. Conforto, I. Guillot & X. Feaugas. (2017) Solute hydrogen and hydride phase implications on the plasticity of zirconium and titanium alloys: a review and some recent advances. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 375:2098, pages 20160417.
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A. J. Ready, A. P. Sutton, P. D. Haynes & D. Rugg. 2016. Proceedings of the 13th World Conference on Titanium. Proceedings of the 13th World Conference on Titanium 1029 1034 .
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Jun Huang, Zhirui Wang & Kemin Xue. (2011) Cyclic deformation response and micromechanisms of Ti alloy Ti–5Al–5V–5Mo–3Cr–0.5Fe. Materials Science and Engineering: A 528:29-30, pages 8723-8732.
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