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Original Articles

The cross-slip energy unresolved

Pages 505-515 | Received 01 May 2009, Accepted 03 Jun 2009, Published online: 29 Jul 2009

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (3)

Congming Jin, Yang Xiang & Gang Lu. (2011) Dislocation cross-slip mechanisms in aluminum. Philosophical Magazine 91:32, pages 4109-4125.
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Gunther Schoeck. (2010) Interaction of Lomer–Cottrell locks with screw dislocations. Philosophical Magazine 90:5, pages 629-636.
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Articles from other publishers (9)

Yuming Qi, Tengwu He, Miaolin Feng & Dengke Chen. (2023) Quantifying the solute-induced additional repulsive force between two partials of pure screw dislocations. Mechanics of Materials 186, pages 104783.
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Orcun Koray Celebi, Ahmed Sameer Khan Mohammed, Jessica A. Krogstad & Huseyin Sehitoglu. (2022) Evolving dislocation cores at Twin Boundaries: Theory of CRSS Elevation. International Journal of Plasticity 148, pages 103141.
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Shuozhi Xu, Liming Xiong, Youping Chen & David L. McDowell. (2017) Shear stress- and line length-dependent screw dislocation cross-slip in FCC Ni. Acta Materialia 122, pages 412-419.
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I. J. Beyerlein & A. Hunter. (2016) Understanding dislocation mechanics at the mesoscale using phase field dislocation dynamics. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences 374:2066, pages 20150166.
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A. Hunter, R. F. Zhang & I. J. Beyerlein. (2014) The core structure of dislocations and their relationship to the material γ-surface. Journal of Applied Physics 115:13.
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A. Hunter & I.J. Beyerlein. (2014) Stacking fault emission from grain boundaries: Material dependencies and grain size effects. Materials Science and Engineering: A 600, pages 200-210.
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A. Hunter & I. J. Beyerlein. (2013) Unprecedented grain size effect on stacking fault width. APL Materials 1:3.
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A Hunter, R F Zhang, I J Beyerlein, T C Germann & M Koslowski. (2013) Dependence of equilibrium stacking fault width in fcc metals on the γ -surface . Modelling and Simulation in Materials Science and Engineering 21:2, pages 025015.
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Gunther Schoeck. (2012) The core structure and Peierls potential of dislocations in Al. Materials Science and Engineering: A 558, pages 162-169.
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