Computer implementations of iterative and non-iterative crystal plasticity solvers on high performance graphics hardware
From MaRDI portal
Publication:889670
DOI10.1007/s00466-015-1194-6zbMath1329.74005OpenAlexW2237165593MaRDI QIDQ889670
Marko Knezevic, Daniel J. Savage
Publication date: 9 November 2015
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-015-1194-6
Lua error in Module:PublicationMSCList at line 37: attempt to index local 'msc_result' (a nil value).
Related Items (7)
An efficient spectral crystal plasticity solver for GPU architectures ⋮ A multi-GPU implementation of a full-field crystal plasticity solver for efficient modeling of high-resolution microstructures ⋮ Machine learning-based multi-objective optimization for efficient identification of crystal plasticity model parameters ⋮ Deep drawing simulations using the finite element method embedding a multi-level crystal plasticity constitutive law: experimental verification and sensitivity analysis ⋮ Spectral database constitutive representation within a spectral micromechanical solver for computationally efficient polycrystal plasticity modelling ⋮ A numerical study into element type and mesh resolution for crystal plasticity finite element modeling of explicit grain structures ⋮ A numerical procedure enabling accurate descriptions of strain rate-sensitive flow of polycrystals within crystal visco-plasticity theory
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Crystal plasticity with Jacobian-free Newton-Krylov
- Building texture evolution networks for deformation processing of polycrystalline fcc metals using spectral approaches: applications to process design for targeted performance
- Using high performance Fortran for parallel programming.
- Consistent tangent operators for rate-independent elastoplasticity
- Modeling transients in the mechanical response of copper due to strain path changes
- General purpose molecular dynamics simulations fully implemented on graphics processing units
- Computationally efficient database and spectral interpolation for fully plastic Taylor-type crystal plasticity calculations of face-centered cubic polycrystals
- Three-dimensional deformation process simulation with explicit use of polycrystal plasticity models
- Application of plastic potentials to strain rate sensitive and insensitive anisotropic materials
- Computational anisotropic plasticity for high-rate forming applications
- Polycrystal plasticity modeling of bulk forming with finite elements over orientation space
- Single crystal and polycrystal elasto-viscoplasticity: Application to earing in cup drawing of F.C.C. materials
- Application of polycrystal plasticity to sheet forming
- A dislocation-based constitutive law for pure Zr including temperature effects
- Orthotropic yield criterion for hexagonal closed packed metals
- Minimization of functions having Lipschitz continuous first partial derivatives
- Explicit incorporation of deformation twins into crystal plasticity finite element models
- A call to arms for task parallelism in multi-scale materials modeling
- OpenCL-based implementation of an unstructured edge-based finite element convection-diffusion solver on graphics hardware
- Generation of large finite-element matrices on multiple graphics processors
- Three orders of magnitude improved efficiency with high-performance spectral crystal plasticity on GPU platforms
- Accelerating crystal plasticity simulations using GPU multiprocessors
- Running unstructured grid-based CFD solvers on modern graphics hardware
- Assembly of finite element methods on graphics processors
- Bounds and self-consistent estimates for creep of polycrystalline materials
- A theory of the yielding and plastic flow of anisotropic metals
This page was built for publication: Computer implementations of iterative and non-iterative crystal plasticity solvers on high performance graphics hardware