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Original Articles

The climb of dissociated dislocations in a quenched Cu-13·43 at.% Al alloy

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Pages 123-137 | Published online: 13 Sep 2006

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Read on this site (6)

Hiroyasu Saka & Shigeo Sugawara. (2015) Evidence of the climb motion of a Shockley partial during glide at room temperature. Philosophical Magazine Letters 95:8, pages 433-440.
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Hiroyasu Saka. (2014) Long-term natural ageing of a dissociated dislocation in a Cu-13.43 at.% Al alloy. Philosophical Magazine Letters 94:7, pages 455-459.
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Mustafa Benyoucef, Brigitte Décamps, Armand Coujou & Nicole Clément. (1995) Stacking‐fault energy at room temperature of the γ matrix of the MC2 Ni‐based superalloy. Philosophical Magazine A 71:4, pages 907-923.
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J. Thibault-Desseaux, H.O. K. Kirchner & J.L. Putaux. (1989) Climb of dissociated dislocations in silicon. Philosophical Magazine A 60:3, pages 385-400.
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S.J. Lee, G. Nouet & J. Vicens. (1989) Microstructure of hot-pressed α-Sic after creep experiments at high temperature. Philosophical Magazine Letters 60:2, pages 37-44.
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D. Cherns & G. Feuillet. (1985) The mechanism of dislocation climb in GaAs under electron irradiation. Philosophical Magazine A 51:5, pages 661-674.
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Articles from other publishers (7)

F.H.J. Laidlaw, R. Beanland, D. Fisher & P.L. Diggle. (2020) Point defects and interstitial climb of 90° partial dislocations in brown type IIa natural diamond. Acta Materialia 201, pages 494-503.
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H. Wang, D. Xu, R. Yang & P. Veyssière. (2008) The transformation of edge dislocation dipoles in aluminium. Acta Materialia 56:17, pages 4608-4620.
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S.L. King, M.L. Jenkins, M.A. Kirk & C.A. English. (1993) Weak-beam imaging of dissociated dislocations in HVEM-irradiated Fe-Ni-Cr alloys. Journal of Nuclear Materials 205, pages 467-475.
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S.J. Lee & J. Vicens. (1992) Transmission electron microscopy studies of dislocation mechanisms in as-sintered α-SiC and after creep experiments at high temperature. Materials Science and Engineering: B 11:1-4, pages 325-330.
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Kyoko Minowa, Ichiro Yonenaga & Koji Sumino. (1991) Climb of extended dislocations in silicon caused by oxygen precipitation. Materials Letters 11:5-7, pages 164-170.
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J. Vicens, S. J. Lee, E. Laurent-Pinson, G. Nouet & J. L. Chermant. 1990. The Physics and Chemistry of Carbides, Nitrides and Borides. The Physics and Chemistry of Carbides, Nitrides and Borides 279 296 .
B. Décamps, M. Condat, P. Caron & T. Khan. (1984) Dissociated matrix dislocations in a σ/σ′ Ni-based single crystal superalloy. Scripta Metallurgica 18:10, pages 1171-1174.
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