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A physically-based dislocation theory of plasticity is derived within an extended continuum mechanical context. Thermodynamically consistent flow rules at the grain boundaries are derived. With an analytical solution of a three-phase periodic laminate, dislocation pile-up at grain boundaries and dislocation transmission through the grain boundaries are investigated. For the finite element implementations, numerically efficient approaches are introduced based on accumulated field variables.

DETAILS

  • Modeling of Dislocation - Grain Boundary Interactions in Gradient Crystal Plasticity Theories
  • Erdle, Hannes
  • Kartoniert, 186 S.
  • graph. Darst.
  • Sprache: Englisch
  • 210 mm
  • ISBN-13: 978-3-7315-1196-0
  • Titelnr.: 96026411
  • Gewicht: 360 g
  • KIT Scientific Publishing (2022)
  • Herstelleradresse

    KIT Scientific Publishing

    Strasse am Forum 2

    76131 - DE Karlsruhe

    E-Mail: info@ksp.kit.edu

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