Abstract
The diffusion coefficients of several alloying elements (Al, Mo, Co, Ta, Ru, W, Cr, Re) in Ni are directly calculated using the five-frequency model and the first principles density functional theory. The correlation factors provided by the five-frequency model are explicitly calculated. The calculated diffusion coefficients show their excellent agreement with the available experimental data. Both the diffusion pre-factor (D 0) and the activation energy (Q) of impurity diffusion are obtained. The diffusion coefficients above 700 K are sorted in the following order: D Al > D Cr > D Co > D Ta > D Mo > D Ru > D W > D Re. It is found that there is a positive correlation between the atomic radius of the solute and the jump energy of Ni that results in the rotation of the solute-vacancy pair (E 1). The value of E 2-E 1 (E 2 is the solute diffusion energy) and the correlation factor each also show a positive correlation. The larger atoms in the same series have lower diffusion activation energies and faster diffusion coefficients.
| Original language | English |
|---|---|
| Article number | 109102 |
| Journal | Chinese Physics B |
| Volume | 21 |
| Issue number | 10 |
| DOIs | |
| State | Published - Oct 2012 |
Keywords
- activation energy and diffusion pre-factor
- alloying element
- diffusion coefficients
- first-principles theory
- superalloy
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