Abstract
Based on Thomas-Fermi model, the change trend of free energy and Gibbs free energy of quasicrystal Al6CuMg4 against Al-Cu-Mg solid solution and compound Al2CuMg were calculated systematically and quantitatively. The main conclusion was following: free energy and Gibbs free energy of quasicrystal phase Al6CuMg4, Al2CuMg and Al-Cu-Mg solid solution increased with increasing of electric field. The effect of positive electric field was more intensive than the negative electric field, but their different was not big. The change trend of free energy and Gibbs free energy of quasicrystal Al6CuMg4 with the electric field was more sensitive than that of solid solution. With increasing of electric field, the differences of free energy and Gibbs free energy between Al6CuMg4 and solid solution increased quickly. The instability of quasicrystal increased under electric field. The stability of Al2CuMg under electric field was obviously higher than that of Al6CuMg4. For Al-Cu-Mg solid solution, the sensitivity increased with increasing of the Mg content, but the amplitude was far lower than those of the compound and quasicrystal.
Original language | English |
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Pages (from-to) | 1578-1583 |
Number of pages | 6 |
Journal | Xiyou Jinshu Cailiao Yu Gongcheng/Rare Metal Materials and Engineering |
Volume | 36 |
Issue number | 9 |
State | Published - Sep 2007 |
Keywords
- AlCuMg quasicrystal
- Electric field
- Free energy
- Gibbs free energy
- Thomas-fermi model