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Original Articles

Discrete dislocation simulation of nanoindentation: the influence of obstacles and a limited number of dislocation sources

Pages 3301-3319 | Received 16 Mar 2005, Accepted 23 Mar 2005, Published online: 21 Feb 2007

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Read on this site (2)

Kelvin Ng Wei Siang & Lucia Nicola. (2017) Static friction of sinusoidal surfaces: a discrete dislocation plasticity analysis. Philosophical Magazine 97:29, pages 2597-2614.
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J. Luo, J. Lin & T. A. Dean. (2006) A study on the determination of mechanical properties of a power law material by its indentation force–depth curve. Philosophical Magazine 86:19, pages 2881-2905.
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Articles from other publishers (7)

Qingshun Bai, Jinxuan Bai, Chao Hu & Hui Guo. (2018) Investigation on the dislocation evolution in nanoindentation with 2.5D discrete dislocation dynamics simulation and experiment. Materials Science and Engineering: A 730, pages 84-91.
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Y Xu, D S Balint & D Dini. (2016) A method of coupling discrete dislocation plasticity to the crystal plasticity finite element method. Modelling and Simulation in Materials Science and Engineering 24:4, pages 045007.
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X. Yin & K. Komvopoulos. (2011) A Discrete Dislocation Plasticity Analysis of a Single-Crystal Half-Space Indented by a Rigid Cylinder. Journal of Applied Mechanics 78:4.
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David L. McDowell. (2010) A perspective on trends in multiscale plasticity. International Journal of Plasticity 26:9, pages 1280-1309.
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David L. McDowell. (2008) Viscoplasticity of heterogeneous metallic materials. Materials Science and Engineering: R: Reports 62:3, pages 67-123.
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S.H. Chen, L. Liu & T.C. Wang. (2007) Small scale, grain size and substrate effects in nano-indentation experiment of film–substrate systems. International Journal of Solids and Structures 44:13, pages 4492-4504.
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H.G.M. Kreuzer & R. Pippan. (2007) Discrete dislocation simulation of nanoindentation: Indentation size effect and the influence of slip band orientation. Acta Materialia 55:9, pages 3229-3235.
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