An integrated fast Fourier transform-based phase-field and crystal plasticity approach to model recrystallization of three dimensional polycrystals
From MaRDI portal
Publication:1798602
DOI10.1016/j.cma.2014.12.007zbMath1423.74712OpenAlexW1988335009MaRDI QIDQ1798602
Publication date: 23 October 2018
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cma.2014.12.007
Crystalline structure (74E15) Micromechanical theories (74A60) Numerical methods for discrete and fast Fourier transforms (65T50) Crystals in solids (74N05)
Related Items (11)
Mixed boundary conditions for FFT-based homogenization at finite strains ⋮ Modelling multiple cycles of static and dynamic recrystallisation using a fully implicit isotropic material model based on dislocation density ⋮ A FFT solver for variational phase-field modeling of brittle fracture ⋮ Phase-field simulations of crystal growth in a two-dimensional cavity flow ⋮ Two-scale FE-FFT- and phase-field-based computational modeling of bulk microstructural evolution and macroscopic material behavior ⋮ A two-set order parameters phase-field modeling of crack deflection/penetration in a heterogeneous microstructure ⋮ An efficient solution scheme for small-strain crystal-elasto-viscoplasticity in a dual framework ⋮ A Comparison of Fourier Spectral Iterative Perturbation Method and Finite Element Method in Solving Phase-Field Equilibrium Equations ⋮ Identification of crystal plasticity model parameters by multi-objective optimization integrating microstructural evolution and mechanical data ⋮ FFT-based solver for higher-order and multi-phase-field fracture models applied to strongly anisotropic brittle materials ⋮ Full-scale, three-dimensional simulation of early-stage tumor growth: the onset of malignancy
Cites Work
- Explicit finite deformation analysis of isogeometric membranes
- A phase-field theory of dislocation dynamics, strain hardening and hysteresis in ductile single crystals.
- A numerical method for computing the overall response of nonlinear composites with complex microstructure
- An isogeometric analysis for elliptic homogenization problems
- Multi phase field model for solid state transformation with elastic strain
- Phase field dependent viscoplastic behaviour of solder alloys
- Combining phase field approach and homogenization methods for modelling phase transformation in elastoplastic media
- Macroscopic properties and field fluctuations in model power-law polycrystals: full-field solutions versus self-consistent estimates
- A gradient theory of single-crystal viscoplasticity that accounts for geometrically necessary dislocations
This page was built for publication: An integrated fast Fourier transform-based phase-field and crystal plasticity approach to model recrystallization of three dimensional polycrystals