A multi-GPU implementation of a full-field crystal plasticity solver for efficient modeling of high-resolution microstructures
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Publication:6044760
DOI10.1016/j.cpc.2020.107231OpenAlexW3008324948MaRDI QIDQ6044760
Adnan Eghtesad, Ricardo A. Lebensohn, Kai Germaschewski, Marko Knezevic
Publication date: 22 May 2023
Published in: Computer Physics Communications (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1016/j.cpc.2020.107231
Related Items (4)
A robust algorithm for rate-independent crystal plasticity ⋮ Machine learning-based multi-objective optimization for efficient identification of crystal plasticity model parameters ⋮ Identification of crystal plasticity model parameters by multi-objective optimization integrating microstructural evolution and mechanical data ⋮ A numerical study into element type and mesh resolution for crystal plasticity finite element modeling of explicit grain structures
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
- Computer implementations of iterative and non-iterative crystal plasticity solvers on high performance graphics hardware
- Computationally efficient database and spectral interpolation for fully plastic Taylor-type crystal plasticity calculations of face-centered cubic polycrystals
- Investigation of three-dimensional aspects of grain-scale plastic surface deformation of an aluminum oligocrystal
- Recent advances in parallel virtual machine and message passing interface. 5th European PVM/MPI users' group meeting. Liverpool, GB, September 7--9, 1998. Proceedings
- A multilevel finite element method (FE\(^{2}\)) to describe the response of highly nonlinear structures using generalized continua.
- Spectral database constitutive representation within a spectral micromechanical solver for computationally efficient polycrystal plasticity modelling
- Parallel Gauss-Jordan elimination for the solution of dense linear systems
- A note on the stability of Gauss-Jordan elimination for diagonally dominant matrices
- Deep drawing simulations using the finite element method embedding a multi-level crystal plasticity constitutive law: experimental verification and sensitivity analysis
- A numerical procedure enabling accurate descriptions of strain rate-sensitive flow of polycrystals within crystal visco-plasticity theory
- Gauss-Jordan elimination method for computing outer inverses
- Explicit incorporation of deformation twins into crystal plasticity finite element models
- A call to arms for task parallelism in multi-scale materials modeling
- Three orders of magnitude improved efficiency with high-performance spectral crystal plasticity on GPU platforms
- Accelerating crystal plasticity simulations using GPU multiprocessors
- On the stability of Gauss-Jordan elimination with pivoting
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