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Original Articles

Constrained glide and interaction of bowed-out screw dislocations in confined channels

Pages 3029-3045 | Received 15 Dec 2004, Accepted 11 Feb 2005, Published online: 21 Feb 2007

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

Read on this site (7)

Petr Pauš, Jan Kratochvíl & Michal Beneš. (2014) Mechanisms controlling the cyclic saturation stress and the critical cross-slip annihilation distance in copper single crystals. Philosophical Magazine Letters 94:2, pages 45-52.
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Yukito Nakanishi, Hiroyuki Tanaka, Toshiyuki Fujii, Susumu Onaka & Masaharu Kato. (2013) Low-temperature fatigue behaviour and development of dislocation structure in aluminium single crystals with single-slip orientation. Philosophical Magazine 93:21, pages 2759-2768.
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J. Křišťan & J. Kratochvíl. (2007) Interactions of glide dislocations in a channel of a persistent slip band. Philosophical Magazine 87:29, pages 4593-4613.
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P. Veyssière & Y.-L. Chiu. (2007) Equilibrium and passing properties of dislocation dipoles. Philosophical Magazine 87:23, pages 3351-3372.
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K. W. Schwarz & H. Mughrabi. (2006) Interaction and passing stress of two threading dislocations of opposite sign in a confined channel. Philosophical Magazine Letters 86:12, pages 773-785.
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L. M. Brown. (2006) Dislocation bowing and passing in persistent slip bands. Philosophical Magazine 86:25-26, pages 4055-4068.
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Articles from other publishers (35)

Peng Zhang, Linfu Zhang, Qiang Zhu, Gang Chen, Chuanjie Wang, Guohua Fan, Heyong Qin, Qiang Tian & Bin Gan. (2023) Evolution of fatigue mechanical properties and micro defects in nickel-based single crystal superalloys: A molecular dynamics research. Materials Today Communications 34, pages 105044.
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Theodore Zirkle, Ting Zhu & David L. McDowell. (2021) Micromechanical crystal plasticity back stress evolution within FCC dislocation substructure. International Journal of Plasticity 146, pages 103082.
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Jorge Rafael Velayarce & Christian Motz. (2020) Effect of Sample Size and Crystal Orientation on the Fatigue Behaviour of Single Crystalline Microbeams. Materials 13:3, pages 741.
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Steven Lavenstein & Jaafar A. El-Awady. (2019) Micro-scale fatigue mechanisms in metals: Insights gained from small-scale experiments and discrete dislocation dynamics simulations. Current Opinion in Solid State and Materials Science 23:5, pages 100765.
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Toshiyuki Fujii, Takahiro Kajita, Tomotaka Miyazawa & Shigeo Arai. (2018) Characterization of dislocation microstructures in cyclically deformed [001] copper single crystals using high voltage scanning transmission electron microscopy. Materials Characterization 136, pages 206-211.
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Gustavo M. Castelluccio & David L. McDowell. (2017) Mesoscale cyclic crystal plasticity with dislocation substructures. International Journal of Plasticity 98, pages 1-26.
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Ladislas Kubin & Maxime Sauzay. (2017) Persistent slip bands: The bowing and passing model revisited. Acta Materialia 132, pages 517-524.
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Ladislas Kubin & Maxime Sauzay. (2016) Persistent slip bands: Similitude and its consequences. Acta Materialia 104, pages 295-302.
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M. Kolář, M. Beneš, J. Kratochvíl & P. Pauš. (2015) Numerical Simulations of Glide Dislocations in Persistent Slip Band. Acta Physica Polonica A 128:4, pages 506-510.
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Petr Pauš & Shigetoshi Yazaki. (2015) Exact solution for dislocation bowing and a posteriori numerical technique for dislocation touching-splitting. JSIAM Letters 7:0, pages 57-60.
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. 2015. Fundamentals of Creep in Metals and Alloys. Fundamentals of Creep in Metals and Alloys 301 332 .
Q.S. Pan & L. Lu. (2014) Strain-controlled cyclic stability and properties of Cu with highly oriented nanoscale twins. Acta Materialia 81, pages 248-257.
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Giacomo Po, Mamdouh S. Mohamed, Tamer Crosby, Can Erel, Anter El-Azab & Nasr Ghoniem. (2014) Recent Progress in Discrete Dislocation Dynamics and Its Applications to Micro Plasticity. JOM 66:10, pages 2108-2120.
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Jan Kratochvíl. 2014. Plasticity and Beyond. Plasticity and Beyond 199 304 .
Petr Pauš, Jan Kratochvíl & Michal Beneš. (2013) A dislocation dynamics analysis of the critical cross-slip annihilation distance and the cyclic saturation stress in fcc single crystals at different temperatures. Acta Materialia 61:20, pages 7917-7923.
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M.E. Kassner, P. Geantil & L.E. Levine. (2013) Long range internal stresses in single-phase crystalline materials. International Journal of Plasticity 45, pages 44-60.
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Yukito Nakanishi, Yoji Miyajima, Toshiyuki Fujii, Susumu Onaka & Masaharu Kato. (2013) Stability of Fatigued Dislocation Wall Structure in Coarse-Grained and Ultrafine-Grained Aluminum against Monotonic Tensile Deformation. MATERIALS TRANSACTIONS 54:1, pages 43-49.
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Peter Geantil, Benoit Devincre & Michael E. Kassner. 2013. Advanced Materials Modelling for Structures. Advanced Materials Modelling for Structures 177 187 .
Emmanuel Clouet, Lisa Ventelon & F. Willaime. (2011) Dislocation core field.II. Screw dislocation in iron. Physical Review B 84:22.
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Josef Křišt'an & Jan Kratochvíl. (2010) Bowing out of a dislocation from wall of persistent slip bands (PSB). International Journal of Materials Research 101:5, pages 680-683.
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M. Beneš, J. Kratochvíl, J. Křištan, V. Minárik & P. Pauš. (2009) A parametric simulation method for discrete dislocation dynamics. The European Physical Journal Special Topics 177:1, pages 177-191.
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Josef Křištán, Jan Kratochvíl, Vojtěch Minárik & Michal Beneš. (2009) Numerical simulation of interacting dislocations glide in a channel of a persistent slip band. Modelling and Simulation in Materials Science and Engineering 17:4, pages 045009.
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Roman Novokshanov & Steve Roberts. (2009) 3D Dislocation dynamics modelling of interactions between prismatic loops and mobile dislocations in pure iron. Journal of Nuclear Materials 386-388, pages 64-66.
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M. E. Kassner, P. Geantil, L. E. Levine & B. C. Larson. (2009) Long-range internal stresses in monotonically and cyclically deformed metallic single crystals. International Journal of Materials Research 100:3, pages 333-339.
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Kohsaku Ushioda, Shoji Goto, Yoshinari Komatsu, Akinori Hoshino & Shigeto Takebayashi. (2009) Evolution of Dislocation Structure and Fatigue Crack Behavior in Fe–Si Alloys during Cyclic Bending Test. ISIJ International 49:2, pages 312-321.
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W.D. Nix. (2009) Yielding and Strain Hardening in Metallic Thin Films on Substrates: an Edge Dislocation Climb Model. Mathematics and Mechanics of Solids 14:1-2, pages 207-219.
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Yu-Lung Chiu & Patrick Veyssière. (2008) Dislocation self-organization under single slip straining and dipole properties. Materials Science and Engineering: A 483-484, pages 191-194.
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Hael Mughrabi & Friedrich Pschenitzka. (2008) Stresses to bow edge dislocation segments out of di-/multipolar edge dislocation bundles. Materials Science and Engineering: A 483-484, pages 469-473.
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Jan Kratochvíl & Radan Sedláček. (2008) Statistical foundation of continuum dislocation plasticity. Physical Review B 77:13.
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Kohsaku Ushioda, Shoji Goto, Yoshinari Komatsu, Akinori Hoshino & Shigeto Takebayashi. (2008) Evolution of Dislocation Structure and Fatigue Crack Behavior in Fe-Si Alloys during Cyclic Bending Test. Tetsu-to-Hagane 94:8, pages 321-330.
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. 2008. Fundamentals of Creep in Metals and Alloys. Fundamentals of Creep in Metals and Alloys 261 288 .
Josef Křišt'an & Jan Kratochvíl. (2007) Estimate of Stress in the Channel of Persistent Slip Bands Based on Dislocation Dynamics. Materials Science Forum 567-568, pages 405-408.
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J. Douin, F. Pettinari-Sturmel & A. Coujou. (2007) Dissociated dislocations in confined plasticity. Acta Materialia 55:19, pages 6453-6458.
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Toshiyuki Fujii, Shizuma Uju, Chihiro Watanabe, Susumu Onaka & Masaharu Kato. (2007) Cyclic Deformation of Al-Mg Single Crystals with a Single Slip Orientation. Materials Science Forum 561-565, pages 2213-2216.
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Patrick Veyssiere. (2012) Equilibrium and Dynamic Properties of Dislocation Dipoles. MRS Proceedings 976.
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