Development of a MD-FEM Coupling Analysis Method and Its Application to Nanopolycrystalline Aluminium.
Author:
Affiliation:
1. Dept. Mech. Eng., Keio Univ.
2. Grad. Sch. Sci. Eng., Keio Univ.
Publisher
Society of Materials Science, Japan
Link
https://www.jstage.jst.go.jp/article/jsms/73/8/73_651/_pdf
Reference18 articles.
1. 1) Y. Yamazaki, T. Murashima, V. Kouznetsova, and M. Muramatsu, “A multiscale FEM-MD coupling method for investigation into atomistic-scale deformation mechanisms of nanocrystalline metals under continuum-scale deformation”, Physica Scripta, Vol. 99, No.2, pp. 025408 1-20, (2024).
2. 2) Y. L. Terashima, P. E. Brumby, T. Murashima, V. Kouznetsova, and M. Muramatsu, “Fine-scale structural stability of carbon dioxide hydrate pellets under coarse-scale deformation using multi-scale coupled FEM-MD simulations”, Materials Today Communications, Vol. 28, pp. 108322 1-12, (2024).
3. 3) R.G. Guan et al., “A review on grain refinement of aluminum alloys: progresses, challenges and prospects”, Acta Metallurgica Sinica (English Letters), Vol.30, pp.409-432, (2017).
4. 4) Y. Z. Tian et al., “Significant contribution of stacking faults to the strain hardening behavior of Cu-15% Al alloy with different grain sizes”, Scientific Reports, Vol.5, pp.1-9, (2015).
5. 5) T. Shimokawa et al., “Grain-size dependence of the relationship between intergranular and intragranular deformation of nanocrystalline Al by molecular dynamics simulations”, Physical Review B, Vol.71, 224110, (2005).
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