Strain Hardening at Large Strains as Predicted by Dislocation Based Polycrystal Plasticity Model
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- Type
- article
- Published
- 2002-01-01
- Cited by
- 209
- References
- 12
- OpenAlex
- https://openalex.org/W1970558224
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:136916634
Keywords
Materials science, Hardening (computing), Plasticity, Viscoplasticity, Strain hardening exponent
References
- Unified constitutive laws of plastic deformation
- Cold work hardening in stages IV and V of F.C.C. metals—I. Experiments and interpretation
- Large strain work hardening and textures
- A dislocation-based model for all hardening stages in large strain deformation
- Tuning a self consistent viscoplastic model by finite element results—I. Modeling
- Dislocation structure and work hardening in polycrystalline ofhc copper rods deformed by torsion and tension
- A new mechanism of work hardening in the late stages of large strain plastic flow in F.C.C. and diamond cubic crystals
- A self consistent approach of the large deformation polycrystal viscoplasticity
- Investigation of the Microstructural Evolution During Large Strain Cold Working of Metals by Means of Synchrotron Radiation—A Comparative Overview
- Asymmetric X-ray Line Broadening of Plastically Deformed Crystals. II. Evaluation Procedure and Application to (001)-Cu Crystals
- Large-strain hardening curves corrected for texture development
- 2 – Dislocation-Density–Related Constitutive Modeling
Cited by
- Microstructural prediction in metal cutting and improvement of machinability and surface integrity via laser-assisted machining
- Plastic Deformation and Microstructural Evolution during ECAP Using a Dislocation Cell Related Microstructure-Based Constitutive Model
- Experimental assessment and simulation of surface nanocrystallization by severe shot peening
- Experimental study and simulation of cyclic softening of tempered martensite ferritic steels
- The creep behaviour of ASTM A437 grade B4B steel for steam turbine applications
- Some Physical Characteristics of Strain Hardening in Severe Plastic Deformation
- The Mechanical Performance of Permanent and Bioabsorbable Metal Stents
- A unified internal state variable material model for inelastic deformation and microstructure evolution in SS304
- A model of grain fragmentation based on lattice curvature
- The influence of back pressure on ECAP processed AA 6016 : Modeling and experiment
- Study of the mechanisms of deformation in ultrafine-grained and coarse-grained copper at different temperatures by the methods of kinetic simulation
- Grain refinement under high strain rate impact: A numerical approach
- Dislocation density-based finite element analysis of large strain deformation behavior of copper under high-pressure torsion
- Optimum groove pressing die design to achieve desirable severely plastic deformed sheets
- Modeling of mechanical behavior of ultra fine grained aluminum produced by multiple compressions in a channel die
- Dislocation structure and strength evolution of heavily deformed tantalum
- Influence of statistical size effects on the plastic deformation of coronary stents.
- The Analysis of SPD Paradox by Computer Modeling Technique
- Stored Energy Predictions from Dislocation-Based Hardening Models and Hardness Measurements for Tensile-Deformed Commercial Purity Copper
- Prediction of the Tension/Compression Asymmetry of ECAP Processed FCC Material Using an Integrated Model Based on Dislocation and Back-Stress
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