Al65Cu23Fe12 alloys were prepared by ball milling of the elemental powders mixture. Phase and structural transformations at heating of as-milled powders were investigated by X-ray diffraction analysis. Precision analysis of Mössbauer spectra was performed to check the adequacy of the fitting of X-ray diffraction patterns. The results were compared with the data of differential scanning and solution calorimetry, as well as with the thermodynamic literature data, in order to estimate the driving forces of redistribution of elements that preceded the formation of single-phase quasicrystalline structure. The heat of elements mixing, which is positive for Cu-Fe system and negative for Al-Fe and Al-Cu systems, was supposed to be a decisive factor for phase transformations during heating of the alloy. The correlation between sequence of phase transformations during heating and the thermodynamic data was discussed and the scheme describing phase transformations observed was proposed. © 2008 IOP Publishing Ltd.
CITATION STYLE
Tcherdyntsev, V. V., Kaloshkin, S. D., Shelekhov, E. V., Principi, G., & Rodin, A. O. (2008). Driving forces of redistribution of elements during quasicrystalline phase formation under heating of mechanically alloyed Al65Cu 23Fe12 powder. Journal of Physics: Conference Series, 98(5). https://doi.org/10.1088/1742-6596/98/5/052003
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