Finite element implementation and numerical issues of strain gradient plasticity with application to metal matrix composites
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Publication:2381059
DOI10.1016/j.ijsolstr.2009.07.028zbMath1183.74273OpenAlexW2086879057MaRDI QIDQ2381059
Lars Pilgaard Mikkelsen, Per G. Fredriksson, Peter Gudmundson
Publication date: 29 March 2010
Published in: International Journal of Solids and Structures (Search for Journal in Brave)
Full work available at URL: https://backend.orbit.dtu.dk/ws/files/3923703/Finite%20element%20implementation.pdf
Finite element methods applied to problems in solid mechanics (74S05) Plastic materials, materials of stress-rate and internal-variable type (74C99)
Related Items (7)
Wedge indentation of thin films modelled by strain gradient plasticity ⋮ On the homogenization of metal matrix composites using strain gradient plasticity ⋮ An improved strain gradient plasticity formulation with energetic interfaces: theory and a fully implicit finite element formulation ⋮ Numerical implementation and validation of a consistently homogenized higher order plasticity model ⋮ Multifield finite strain plasticity: theory and numerics ⋮ Size-effects on yield surfaces for micro reinforced composites ⋮ Strain gradient elasto-plasticity model: 3D isogeometric implementation and applications to cellular structures
Uses Software
Cites Work
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- Wedge indentation of thin films modelled by strain gradient plasticity
- Modelling of the interface between a thin film and a substrate within a strain gradient plasticity framework
- Post-necking behaviour modelled by a gradient dependent plasticity theory
- Bounds and estimates for the effect of strain gradients upon the effective plastic properties of an isotropic two-phase composite
- A unified treatment of strain gradient plasticity
- A comparison of nonlocal continuum and discrete dislocation plasticity predictions.
- The physics of plastic deformation
- Geometrically necessary dislocations in viscoplastic single crystals and bicrystals undergoing small deformations
- Strain gradient crystal plasticity analysis of a single crystal containing a cylindrical void
- The role of interfaces in enhancing the yield strength of composites and polycrystals
- A one-dimensional theory of strain-gradient plasticity: formulation, analysis, numerical results
- Gradient-dependent plasticity: Formulation and algorithmic aspects
- Non-uniform plastic deformation of micron scale objects
- Plastic flow in a composite: A comparison of nonlocal continuum and discrete dislocation predictions
- A reformulation of strain gradient plasticity.
- A gradient theory of single-crystal viscoplasticity that accounts for geometrically necessary dislocations
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