The role of synchronization of atomic vibrations and energy self-regulation in the formation of eutectic materials under contact melting conditions by
- Autores: Ahkubekov A.A.1, Akhkubekova S.N.2, Uzdenov E.M.3
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Afiliações:
- Kabardino-Balkarian State University
- V.M. Kokov Kabardino-Balkarian Agrarian University
- Kabardino-Balkarian State University named after Kh. M. Berbekov
- Edição: Volume 15, Nº 2 (2025)
- Páginas: 25-29
- Seção: Physics
- URL: https://ogarev-online.ru/2221-7789/article/view/351110
- ID: 351110
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Resumo
A hypothetical model of the initial stage of contact eutectic melting is proposed, explaining the phase transition through the synchronization of oscillations of atoms at the phase boundary, with a change in the contact temperature. Synchronization leads to a resonant increase in the amplitudes of atomic (molecule) oscillations, a decrease in their bond energy, and a transition to the liquid phase. The model is consistent with the classical phase diagram, where the eutectic point corresponds to the energetically favorable state of resonant melting. To analyze the eutectic behavior, heterogeneous systems were studied: non-metallic H2O– NaCl and metallic Ga–In and Al–Cu, in which intermetallic phases are formed. In all cases, a characteristic drop in temperature and transition to a liquid state upon reaching the eutectic are observed. The results confirm that local oscillatory processes play a key role in the formation of a liquid layer of eutectic composition, complementing traditional thermodynamic concepts.
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Sobre autores
Anatoly Ahkubekov
Kabardino-Balkarian State University
Autor responsável pela correspondência
Email: uzden.off@yandex.ru
Doctor of Physics and Mathematics, Senior Researcher at the Department of Nanosystems Physics at the Institute of Mathematics and Natural Sciences Rússia
Svetlana Akhkubekova
V.M. Kokov Kabardino-Balkarian Agrarian University
Email: uzden.off@yandex.ru
Candidate of Physics and Mathematics, Associate Professor
Eldar Uzdenov
Kabardino-Balkarian State University named after Kh. M. Berbekov
Email: uzden.off@yandex.ru
Rússia
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