Identification of initial critical resolved shear stresses using of a two-level model of inelastic deformation
DOI10.1134/S1995080223060240zbMath1525.74036OpenAlexW4387316372MaRDI QIDQ6096822
P. V. Trusov, D. S. Bezverkhy, N. S. Kondratev
Publication date: 12 October 2023
Published in: Lobachevskii Journal of Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1134/s1995080223060240
yield strengthparameter identificationoptimization problemloading diagramcopper polycrystal modeltwo-level elasto-viscoplastic statistical model
Small-strain, rate-dependent theories of plasticity (including theories of viscoplasticity) (74C10) Inverse problems in equilibrium solid mechanics (74G75) Numerical and other methods in solid mechanics (74S99)
Cites Work
- Predicting the Hall-Petch effect in fcc metals using non-local crystal plasticity
- An experimental study on grain deformation and interactions in an Al-0.5\% Mg multicrystal.
- Evaluation of an inverse methodology for estimating constitutive parameters in face-centered cubic materials from single crystal indentations
- Evaluation of finite element based analysis of 3D multicrystalline aggregates plasticity: application to crystal plasticity model identification and the study of stress and strain fields near grain boundaries
- Microstructure sensitive design of an orthotropic plate subjected to tensile load
- Measurement of deformation fields in polycrystalline OFHC copper.
- Identification of crystal plasticity model parameters by multi-objective optimization integrating microstructural evolution and mechanical data
- A dislocation-based constitutive law for pure Zr including temperature effects
- Single-crystal elasto-viscoplasticity: application to texture evolution in polycrystalline metals at large strains
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