Learning dislocation dynamics mobility laws from large-scale MD simulations
Author:
Funder
DOE | LDRD | Lawrence Livermore National Laboratory
DOE | Office of Energy Efficiency and Renewable Energy
Publisher
Springer Science and Business Media LLC
Link
https://www.nature.com/articles/s41524-024-01378-4.pdf
Reference64 articles.
1. Kubin, L. P. et al. Dislocation microstructures and plastic flow: a 3D simulation. Solid state Phenom. 23, 455–472 (1992).
2. Zbib, H. M., Rhee, M. & Hirth, J. P. On plastic deformation and the dynamics of 3D dislocations. Int. J. Mech. Sci. 40, 113–127 (1998).
3. Bulatov, V., Abraham, F. F., Kubin, L., Devincre, B. & Yip, S. Connecting atomistic and mesoscale simulations of crystal plasticity. Nature 391, 669–672 (1998).
4. Schwarz, K. Simulation of dislocations on the mesoscopic scale. i. methods and examples. J. Appl. Phys. 85, 108–119 (1999).
5. Ghoniem, N. A. M., Tong, S.-H. & Sun, L. Parametric dislocation dynamics: a thermodynamics-based approach to investigations of mesoscopic plastic deformation. Phys. Rev. B 61, 913 (2000).
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