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Original Articles

The peierls energy and kink energy in fcc metals

Pages 949-966 | Received 17 Jun 2003, Accepted 06 Sep 2004, Published online: 21 Aug 2006

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

Read on this site (4)

Karine Gouriet, Philippe Carrez, Patrick Cordier, Antoine Guitton, Anne Joulain, Ludovic Thilly & Christophe Tromas. (2015) Dislocation modelling in Ti2AlN MAX phase based on the Peierls–Nabarro model. Philosophical Magazine 95:23, pages 2539-2552.
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He Wei & Yang Xiang. (2009) A generalized Peierls–Nabarro model for kinked dislocations. Philosophical Magazine 89:27, pages 2333-2354.
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Gunther Schoeck. (2009) The cross-slip energy unresolved. Philosophical Magazine Letters 89:8, pages 505-515.
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G. Schoeck. (2006) Modelling the Bordoni peak† . Philosophical Magazine 86:25-26, pages 3819-3834.
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Articles from other publishers (18)

Li Ma, Jingli Huang, Pingying Tang, Guohua Huang, Li Zeng, Zhipeng Wang & Touwen Fan. (2022) Deep Insights into Complicated Superdislocation Dissociation and Core Properties of Dislocation in L1 2 ‐Al 3 RE Compounds: A Comprehensive First‐Principles Study . physica status solidi (b) 259:11, pages 2200211.
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Dongpeng Hua, Qiaosheng Xia, Wan Wang, Qing Zhou, Shuo Li, Dan Qian, Junqin Shi & Haifeng Wang. (2021) Atomistic insights into the deformation mechanism of a CoCrNi medium entropy alloy under nanoindentation. International Journal of Plasticity 142, pages 102997.
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Roberto Pasianot & Diana Farkas. (2020) Atomistic modeling of dislocations in a random quinary high-entropy alloy. Computational Materials Science 173, pages 109366.
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Jonathan Humberson, Ian Chesser & Elizabeth A. Holm. (2019) Contrasting thermal behaviors in Σ3 grain boundary motion in nickel. Acta Materialia 175, pages 55-65.
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Shuhei Yoshida, Takuto Ikeuchi, Tilak Bhattacharjee, Yu Bai, Akinobu Shibata & Nobuhiro Tsuji. (2019) Effect of elemental combination on friction stress and Hall-Petch relationship in face-centered cubic high / medium entropy alloys. Acta Materialia 171, pages 201-215.
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Ainara Irastorza-Landa, Nicolò Grilli & Helena Van Swygenhoven. (2017) Effect of pre-existing immobile dislocations on the evolution of geometrically necessary dislocations during fatigue. Modelling and Simulation in Materials Science and Engineering 25:5, pages 055010.
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Tou-Wen Fan, Xiu-Bo Yang, Jiang-Hua Chen, Ling-Hong Liu, Ding-Wan Yuan, Yong Zhang & Cui-Lan Wu. (2016) Application of the Peierls–Nabarro Model to Symmetric Tilt Low-Angle Grain Boundary with Full <a> Dislocation in Pure Magnesium. Acta Metallurgica Sinica (English Letters) 29:11, pages 1053-1063.
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Aiyu Zhu, Congming Jin, Degang Zhao, Yang Xiang & Jingfang Huang. (2015) A Numerical Scheme for Generalized Peierls-Nabarro Model of Dislocations Based on the Fast Multipole Method and Iterative Grid Redistribution. Communications in Computational Physics 18:5, pages 1282-1312.
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Tou-Wen Fan, Quan Zhang, Li Ma, Ping-Ying Tang, Bi-Yu Tang, Li-Ming Peng & Wen-Jiang Ding. (2014) First-principles study of the dislocation core structures on basal plane in magnesium. European Journal of Mechanics - A/Solids 45, pages 1-7.
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David Rodney & Joël Bonneville. 2014. Physical Metallurgy. Physical Metallurgy 1591 1680 .
Tou-Wen Fan, Li-Guo Luo, Li Ma, Bi-Yu Tang, Li-Ming Peng & Wen-Jiang Ding. (2013) Effects of Zn atoms on the basal dislocation in magnesium solution from Peierls–Nabarro model. Materials Science and Engineering: A 582, pages 299-304.
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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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D. Geissler, J. Freudenberger, A. Kauffmann, M. Krautz, H. Klauss, A. Voss, J. Eickemeyer & L. Schultz. (2011) Appearance of dislocation-mediated and twinning-induced plasticity in an engineering-grade FeMnNiCr alloy. Acta Materialia 59:20, pages 7711-7723.
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Gunther Schoeck. (2011) The Peierls stress in a simple cubic lattice. physica status solidi (b) 248:10, pages 2284-2289.
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A. M. Walker, P. Carrez & P. Cordier. (2018) Atomic-scale models of dislocation cores in minerals: progress and prospects. Mineralogical Magazine 74:3, pages 381-413.
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Gunther Schoeck. (2009) The Bordoni relaxation revisited. Materials Science and Engineering: A 521-522, pages 24-29.
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Alfred Seeger. (2009) Verhakungen, dislocations, solitons, and kinks. International Journal of Materials Research 100:1, pages 24-36.
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Yang Xiang, He Wei, Pingbing Ming & Weinan E. (2008) A generalized Peierls–Nabarro model for curved dislocations and core structures of dislocation loops in Al and Cu. Acta Materialia 56:7, pages 1447-1460.
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