Modeling the viscoplastic micromechanical response of two-phase materials using fast Fourier transforms
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Publication:414350
DOI10.1016/j.ijplas.2010.09.002zbMath1405.74012OpenAlexW1991034525MaRDI QIDQ414350
Publication date: 11 May 2012
Published in: International Journal of Plasticity (Search for Journal in Brave)
Full work available at URL: https://www.osti.gov/biblio/971652
Small-strain, rate-dependent theories of plasticity (including theories of viscoplasticity) (74C10) Crystalline structure (74E15) Micromechanics of solids (74M25) Spectral and related methods applied to problems in solid mechanics (74S25)
Related Items (12)
FFT-based modelling of transformation plasticity in polycrystalline materials during diffusive phase transformation ⋮ Mixed boundary conditions for FFT-based homogenization at finite strains ⋮ Use of composite voxels in FFT-based homogenization ⋮ Convergence of FFT‐based homogenization for strongly heterogeneous media ⋮ Construction of Statistically Similar RVEs ⋮ The finite element square reduced (FE2R ) method with GPU acceleration: towards three-dimensional two-scale simulations ⋮ Explicit phase-field material point method with the convected particle domain interpolation for impact/contact fracture in elastoplastic geomaterials ⋮ Multi-scale analysis in elasto-viscoplasticity coupled with damage ⋮ A Flexible Framework for Multidimensional DFTs ⋮ FFT-based micromechanical simulations of transformation plasticity. Comparison with a limit-analysis-based theory ⋮ Construction of two- and three-dimensional statistically similar RVEs for coupled micro-macro simulations ⋮ Phase-field implicit material point method with the convected particle domain interpolation for brittle-ductile failure transition in geomaterials involving finite deformation
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