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Numerical analysis of strain path dependency in FCC metals

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Publication:1021089
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DOI10.1007/S00466-007-0195-5zbMath1162.74328OpenAlexW2109340147MaRDI QIDQ1021089

E. M. Viatkina, W. A. M. Brekelmans, Marc G. D. Geers

Publication date: 8 June 2009

Published in: Computational Mechanics (Search for Journal in Brave)

Full work available at URL: https://doi.org/10.1007/s00466-007-0195-5


zbMATH Keywords

metal forminginternal stressdislocation cell structureplasticity anisotropystrain path change effect


Mathematics Subject Classification ID

Crystalline structure (74E15) Large-strain, rate-dependent theories of plasticity (74C20) Statistical mechanics of metals (82D35)


Related Items (2)

Modelling of elastoplastic behaviour of metallic materials with a homogenization approach: a self-consistent model based on dislocation densities ⋮ Micromechanical modelling of the elastoplastic behaviour of metallic material under strain-path changes




Cites Work

  • Plastic flow for non-monotonic loading conditions of an aluminum alloy sheet sample.
  • Modelling of the internal stress in dislocation cell structures




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