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Part A: Materials Science

An easy implementation of displacement calculations in 3D discrete dislocation dynamics codes

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Pages 3206-3214 | Received 16 May 2014, Accepted 21 Jul 2014, Published online: 09 Sep 2014

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C. Déprés, Z. Yang & C. Robertson. (2022) Stage-II fatigue crack growth model from 3D dislocation dynamics simulations. Philosophical Magazine 102:6, pages 504-521.
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G. V. Prasad Reddy, R. Sandhya, K. Laha, C. Depres, C. Robertson & A. K. Bhaduri. (2017) The effect of the location of stage-I fatigue crack across the persistent slip band on its growth rate – A 3D dislocation dynamics study. Philosophical Magazine 97:16, pages 1265-1280.
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C. Déprés, G.V. Prasad Reddy, C. Robertson & M. Fivel. (2014) An extensive 3D dislocation dynamics investigation of stage-I fatigue crack propagation. Philosophical Magazine 94:36, pages 4115-4137.
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Junjie Yang, Ali Rida, Yejun Gu, Daniel Magagnosc, Tamer A. Zaki & Jaafar A. El-Awady. (2023) The three-dimensional elastodynamic solution for dislocation plasticity and its implementation in discrete dislocation dynamics simulations. Acta Materialia 253, pages 118945.
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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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Haël Mughrabi. (2020) Revisiting “Steady-State” Monotonic and Cyclic Deformation: Emphasizing the Quasi-Stationary State of Deformation. Metallurgical and Materials Transactions A 51:4, pages 1441-1456.
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B Bromage & E Tarleton. (2018) Calculating dislocation displacements on the surface of a volume. Modelling and Simulation in Materials Science and Engineering 26:8, pages 085007.
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Jaehyun Cho, Jean-Francois Molinari, William A. Curtin & Guillaume Anciaux. (2018) The coupled atomistic/discrete-dislocation method in 3d. Part III: Dynamics of hybrid dislocations. Journal of the Mechanics and Physics of Solids 118, pages 1-14.
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G. Anciaux, T. Junge, M. Hodapp, J. Cho, J.-F. Molinari & W.A. Curtin. (2018) The Coupled Atomistic/Discrete-Dislocation method in 3d part I: Concept and algorithms. Journal of the Mechanics and Physics of Solids 118, pages 152-171.
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Nicolas Bertin, Vedran Glavas, Dibakar Datta & Wei Cai. (2018) A spectral approach for discrete dislocation dynamics simulations of nanoindentation. Modelling and Simulation in Materials Science and Engineering 26:5, pages 055004.
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Joshua C Crone, Lynn B Munday, James J Ramsey & Jaroslaw Knap. (2018) Modeling the effect of dislocation density on the strength statistics in nanoindentation. Modelling and Simulation in Materials Science and Engineering 26:1, pages 015009.
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Y.P. Chen, J.P. Guo & Y.Y. Cai. (2017) An anisotropic distribution dislocation loop model for simulation of nanoindentation of single crystals. Mechanics of Materials 108, pages 1-10.
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Hyung-Jun Chang, Javier Segurado, Jon M Molina-Aldareguía, Rafael Soler & Javier LLorca. (2016) A 3D dislocation dynamics analysis of the size effect on the strength of [1 1 1] LiF micropillars at 300K and 600K. Modelling and Simulation in Materials Science and Engineering 24:3, pages 035009.
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