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This article is cited in 13 scientific papers (total in 13 papers)
Lattice dynamics
On the calculation of the Debye temperature and crystal–liquid phase transition temperature of a binary substitution alloy
M. N. Magomedov Institute of Geothermy Problems, Makhachkala
Abstract:
A method of estimating the interatomic pair interaction potential parameters for a binary substitution alloy with consideration for the deviation of its lattice parameter from the Vegard law is proposed. This method is used as a basis to calculate the Debye temperature and Grüneisen parameters of a SiGe alloy. It is shown that all these function nonlinearly variate with a change in the germanium concentration. Based on this technique and Lindemann's melting criterion, a method for calculating the liquidus and solidus temperatures of a disordered substitution alloy is proposed. The method is tested on the SiGe alloy and demonstrates good agreement with experimental data. It is shown that when the size of a nanocrystal of a solid substitution solution decreases, the difference between the liquidus and solidus temperatures decreases the more, the more noticeably the nanocrystal shape is deflected from the most energetically optimal shape.
Received: 16.08.2017 Revised: 30.10.2017
Citation:
M. N. Magomedov, “On the calculation of the Debye temperature and crystal–liquid phase transition temperature of a binary substitution alloy”, Fizika Tverdogo Tela, 60:5 (2018), 970–977; Phys. Solid State, 60:5 (2018), 981–988
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https://www.mathnet.ru/eng/ftt9208 https://www.mathnet.ru/eng/ftt/v60/i5/p970
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Abstract page: | 66 | Full-text PDF : | 58 |
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