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Original Articles

Dislocation bowing and passing in persistent slip bands

Pages 4055-4068 | Received 04 Oct 2005, Accepted 18 Jan 2006, Published online: 29 Nov 2010

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

Read on this site (10)

Shuai Shao, Michael M. Khonsari, Jian Wang, Nima Shamsaei & Nan Li. (2018) Frequency dependent deformation reversibility during cyclic loading. Materials Research Letters 6:7, pages 390-397.
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L. M. Brown. (2016) Power laws in dislocation plasticity. Philosophical Magazine 96:26, pages 2696-2713.
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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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L.M. Brown. (2013) Cracks and extrusions caused by persistent slip bands. Philosophical Magazine 93:28-30, pages 3809-3820.
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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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M. Niewczas. (2013) Latent hardening effects in low cycle fatigue of copper single crystals. Philosophical Magazine 93:1-3, pages 272-303.
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L.M. Brown. (2010) An interpretation of the Haasen–Kelly effect. Philosophical Magazine 90:31-32, pages 4147-4152.
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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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Articles from other publishers (32)

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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Farhan Ashraf & Gustavo M. Castelluccio. (2023) History and temperature dependent cyclic crystal plasticity model with material-invariant parameters. International Journal of Plasticity 161, pages 103494.
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Mohammad S. Dodaran, Muztahid Muhammad, Nima Shamsaei & Shuai Shao. (2022) Synergistic effect of microstructure and defects on the initiation of fatigue cracks in additively manufactured Inconel 718. International Journal of Fatigue 162, pages 107002.
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Tianchang Ma, Kentaro Chahara, Tomotaka Miyazawa & Toshiyuki Fujii. (2022) Formation of dislocation structures during cyclic deformation in near-[001] multiple-slip-oriented copper single crystals. International Journal of Fatigue 162, pages 106953.
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Fanshi Meng, Emilie Ferrié, Christophe Déprés & Marc Fivel. (2021) 3D discrete dislocation dynamic investigations of persistent slip band formation in FCC metals under cyclical deformation. International Journal of Fatigue 149, pages 106234.
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Roya Ermagan, Maxime Sauzay, Matthew H. Mecklenburg & Michael E. Kassner. (2020) Determination of Long-Range Internal Stresses in Cyclically Deformed Copper Single Crystals Using Convergent Beam Electron Diffraction. Crystals 10:12, pages 1071.
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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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Tianju Chen, Rui Yuan, Irene J. Beyerlein & Caizhi Zhou. (2020) Predicting the size scaling in strength of nanolayered materials by a discrete slip crystal plasticity model. International Journal of Plasticity 124, pages 247-260.
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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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S. Shao, M.M. Khonsari, S. Guo, W.J. Meng & N. Li. (2019) Overview: Additive Manufacturing Enabled Accelerated Design of Ni-based Alloys for Improved Fatigue Life. Additive Manufacturing 29, pages 100779.
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M. Dodaran, M.M. Khonsari & S. Shao. (2019) Critical operating stress of persistent slip bands in Cu. Computational Materials Science 165, pages 114-120.
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Thomas Schenk, Roxane Trehorel, Laura Dirand & Alain Jacques. (2018) Dislocation Densities and Velocities within the γ Channels of an SX Superalloy during In Situ High-Temperature Creep Tests. Materials 11:9, pages 1527.
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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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Pierre-Antoine Geslin, Riccardo Gatti, Benoit Devincre & David Rodney. (2017) Implementation of the nudged elastic band method in a dislocation dynamics formalism: Application to dislocation nucleation. Journal of the Mechanics and Physics of Solids 108, pages 49-67.
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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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P. Peralta & C. Laird. 2016. Reference Module in Materials Science and Materials Engineering. Reference Module in Materials Science and Materials Engineering.
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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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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Pedro Peralta & Campbell Laird. 2014. Physical Metallurgy. Physical Metallurgy 1765 1880 .
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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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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M.F. Giordana, P.-F. Giroux, I. Alvarez-Armas, M. Sauzay, A. Armas & T. Kruml. (2012) Microstructure evolution during cyclic tests on EUROFER 97 at room temperature. TEM observation and modelling. Materials Science and Engineering: A 550, pages 103-111.
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Emmanuel Clouet, Lisa Ventelon & F. Willaime. (2011) Dislocation core field.II. Screw dislocation in iron. Physical Review B 84:22.
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M. Sauzay & L.P. Kubin. (2011) Scaling laws for dislocation microstructures in monotonic and cyclic deformation of fcc metals. Progress in Materials Science 56:6, pages 725-784.
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M.F. Giordana, P.-F. Giroux, I. Alvarez-Armas, M. Sauzay & A. Armas. (2011) Micromechanical modeling of the cyclic softening of EUROFER 97 steel. Procedia Engineering 10, pages 1268-1273.
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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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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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Jan Kratochvíl & Radan Sedláček. (2008) Statistical foundation of continuum dislocation plasticity. Physical Review B 77:13.
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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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