Efficient gradient enhancements for plasticity with ductile damage in the logarithmic strain space
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Publication:2692862
DOI10.1016/J.EUROMECHSOL.2023.104946OpenAlexW4320882898MaRDI QIDQ2692862
Johannes Friedlein, Paul Steinmann, Julia Mergheim
Publication date: 17 March 2023
Published in: European Journal of Mechanics. A. Solids (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.euromechsol.2023.104946
ductile damagefinite plasticityloss of ellipticitygradient-enhancementlogarithmic strain spacegradient-damagegradient-plasticity
Anelastic fracture and damage (74R20) Plastic materials, materials of stress-rate and internal-variable type (74Cxx)
Related Items (2)
A large strain anisotropic ductile damage model -- effective driving forces and gradient-enhancement of damage vs. plasticity ⋮ Damage in a comprehensive model for shape memory alloys in logarithmic strain space
Cites Work
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- On non-associative anisotropic finite plasticity fully coupled with isotropic ductile damage for metal forming
- Finite strain logarithmic hyperelasto-plasticity with softening: a strongly non-local implicit gradient framework
- A note on some features of the theory of localization of deformation
- On the localization properties of multiplicative hyperelasto-plastic continua with strong discontinuities
- A thermodynamically consistent theory of gradient-regularized plasticity coupled to damage
- Numerical analysis and elastic-plastic deformation behavior of anisotropically damaged solids
- Nonlocal implicit gradient-enhanced elasto-plasticity for the modelling of softening behaviour.
- Anisotropic additive plasticity in the logarithmic strain space: Modular kinematic formulation and implementation based on incremental minimization principles for standard materials.
- On coupled gradient-dependent plasticity and damage theories with a view to localization analysis
- Variational phase-field formulation of non-linear ductile fracture
- Lagrange multiplier based vs micromorphic gradient-enhanced rate-(in)dependent crystal plasticity modelling and simulation
- Strain gradient finite element model for finite deformation theory: size effects and shear bands
- The deal.II library, Version 9.1
- A nonlocal triaxiality-dependent ductile damage model for finite strain plasticity
- Spectral analysis of localization in nonlocal and over-nonlocal materials with softening plasticity or damage
- An evaluation of higher-order plasticity theories for predicting size effects and localisation
- Numerical analyses of discontinuous material bifurcation: strong and weak discontinuities
- Elastoplasticity beyond small deformations
- On the application of the additive decomposition of generalized strain measures in large strain plasticity
- A large strain gradient-enhanced ductile damage model: finite element formulation, experiment and parameter identification
- Algorithms for computation of stresses and elasticity moduli in terms of Seth-Hill's family of generalized strain tensors
- A regularization framework for damage-plasticity models via gradient enhancement of the free energy
- GRADIENT ENHANCED DAMAGE FOR QUASI-BRITTLE MATERIALS
- Strongly non‐local gradient‐enhanced finite strain elastoplasticity
- Formulation and computation of geometrically non-linear gradient damage
- Nonlinear regularization operators as derived from the micromorphic approach to gradient elasticity, viscoplasticity and damage
- A non-local model with tension and compression damage mechanisms
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