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Stability of vacancy-type defect clusters in Ni based on first-principles and molecular dynamics simulations...

by Yanwen Zhang, William J Weber
Publication Type
Journal
Journal Name
Scripta Materialia
Publication Date
Page Numbers
71 to 75
Volume
145

Using first-principles calculations based on density-functional theory, the energetics of different vacancy-type defects, including voids, stacking fault tetrahedra (SFT) and vacancy loops, in Ni are investigated. It is found that voids are more stable than SFT at 0 K, which is also the case after taking into account the volumetric strains. By carrying out ab initio molecular dynamics simulations at temperatures up to 1000 K, direct transformations from vacancy loops and voids into SFT are observed. Our results suggest the importance of temperature effects in determining thermodynamic stability of vacancy clusters in face-centered cubic metals.