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Original Articles

Modelling of edge dislocation dipoles in face-centred-cubic lattices

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Pages 503-512 | Received 23 Jan 1989, Accepted 24 Jan 1989, Published online: 20 Aug 2006

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Read on this site (4)

P. Veyssière & Y.-L. Chiu. (2007) Equilibrium and passing properties of dislocation dipoles. Philosophical Magazine 87:23, pages 3351-3372.
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Patrick Veyssière. (2001) The annihilation by glide of prismatic loops in walls. Philosophical Magazine Letters 81:11, pages 733-741.
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A. Aslanides & V. Pontikis. (2000) Numerical study of the athermal annihilation of edge-dislocation dipoles. Philosophical Magazine A 80:10, pages 2337-2353.
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Minya Ma & Tomoya Ogawa. (1996) Observation of the morphology and displacement of dislocations in vapour phase grown ZnSe crystals. Philosophical Magazine A 74:2, pages 477-493.
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Articles from other publishers (15)

Patrick Veyssière, Yu-Lung Chiu & Marek Niewczas. (2022) Dislocation micromechanisms under single slip conditions. International Journal of Materials Research 97:3, pages 189-199.
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Z. Zhen, H. Wang, C.Y. Teng, C.G. Bai, D.S. Xu & R. Yang. (2021) Dislocation self-interaction in TiAl: Evolution of super-dislocation dipoles revealed by atomistic simulations. Journal of Materials Science & Technology 69, pages 138-147.
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G. Hachet, A. Metsue, A. Oudriss & X. Feaugas. (2020) The influence of hydrogen on cyclic plasticity of <001> oriented nickel single crystal. Part II: Stability of edge dislocation dipoles. International Journal of Plasticity 129, pages 102667.
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Zhigang Yan & Yaojun Lin. (2019) Faulted dipoles in a nanostructured 7075 Al alloy produced via high-pressure torsion. Materials Science and Engineering: A 754, pages 232-237.
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Hao Wang. (2017) On the annihilation of dislocation dipoles in metals. AIMS Materials Science 4:6, pages 1231-1239.
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H Wang, D S Xu, D Rodney, P Veyssière & R Yang. (2013) Atomistic investigation of the annihilation of non-screw dislocation dipoles in Al, Cu, Ni and γ -TiAl . Modelling and Simulation in Materials Science and Engineering 21:2, pages 025002.
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Steffen Brinckmann, Rakulan Sivanesapillai & Alexander Hartmaier. (2011) On the formation of vacancies by edge dislocation dipole annihilation in fatigued copper. International Journal of Fatigue 33:10, pages 1369-1375.
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L. Li, T. Ungár, Y.D. Wang, J.R. Morris, G. Tichy, J. Lendvai, Y.L. Yang, Y. Ren, H. Choo & P.K. Liaw. (2009) Microstructure evolution during cold rolling in a nanocrystalline Ni–Fe alloy determined by synchrotron X-ray diffraction. Acta Materialia 57:17, pages 4988-5000.
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H. Wang, D.S. Xu, R. Yang & P. Veyssière. (2009) The transformation of narrow dislocation dipoles in selected fcc metals and in γ-TiAl. Acta Materialia 57:13, pages 3725-3737.
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P Veyssière, H Wang, D S Xu & Y L Chiu. (2009) Local dislocation reactions, self-organization and hardening in single slip. IOP Conference Series: Materials Science and Engineering 3, pages 012018.
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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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Patrick Veyssière, Yu-Lung Chiu & Marek Niewczas. (2006) Dislocation micromechanisms under single slip conditions. Zeitschrift für Metallkunde 97:3, pages 189-199.
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Tejs Vegge & Karsten W Jacobsen. (2002) Atomistic simulations of dislocation processes in copper. Journal of Physics: Condensed Matter 14:11, pages 2929-2956.
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A. Aslanides & V. Pontikis. 2000. Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering. Multiscale Phenomena in Plasticity: From Experiments to Phenomenology, Modelling and Materials Engineering 293 302 .
H. Häkkinen, S. Mäkinen & M. Manninen. (1990) Edge dislocations in fcc metals: Microscopic calculations of core structure and positron states in Al and Cu. Physical Review B 41:18, pages 12441-12453.
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