Bending of single crystal thin films modeled with micropolar crystal plasticity
From MaRDI portal
Publication:1659761
DOI10.1016/J.IJENGSCI.2011.05.018zbMath1423.74199OpenAlexW2055381203MaRDI QIDQ1659761
David L. McDowell, Jason R. Mayeur
Publication date: 23 August 2018
Published in: International Journal of Engineering Science (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.ijengsci.2011.05.018
Crystalline structure (74E15) Finite element methods applied to problems in solid mechanics (74S05) Crystals in solids (74N05)
Related Items (3)
Dislocations and disclinations: continuously distributed defects in elasto-plastic crystalline materials ⋮ Numerical implementation and validation of a consistently homogenized higher order plasticity model ⋮ A duality‐based coupling of Cosserat crystal plasticity and phase field theories for modeling grain refinement
Uses Software
Cites Work
- Unnamed Item
- Dislocation-based micropolar single crystal plasticity: comparison of multi- and single criterion theories
- On the evolution of crystallographic dislocation density in non-homogeneously deforming crystals
- A comparison of a statistical-mechanics based plasticity model with discrete dislocation plasticity calculations
- Size effects in generalised continuum crystal plasticity for two-phase laminates
- A model of elastoplastic bodies with continuously distributed dislocations
- A comparison of dislocation-induced back stress formulations in strain gradient crystal plasticity
- Cosserat modelling of size effects in the mechanical behaviour of polycrystals and multi-phase materials
- The role of strain gradients in the grain size effect for polycrystals.
- Finite element analysis of grain-by-grain deformation by crystal plasticity with couple stress.
- Strain gradient crystal plasticity: Size-dependent deformation of bicrystals
- A discrete dislocation analysis of bending
- Nonlinear theory of simple micro-elastic solids. I
- Non-local crystal plasticity model with intrinsic SSD and GND effects
- Modeling dislocations and disclinations with finite micropolar elastoplasticity
- A dynamical theory of structures solids. I Basic developments
- A model of crystal plasticity based on the theory of continuously distributed dislocations
- A gradient theory of single-crystal viscoplasticity that accounts for geometrically necessary dislocations
This page was built for publication: Bending of single crystal thin films modeled with micropolar crystal plasticity