Development of the theoretical annealing model for two-component systems
https://doi.org/10.34680/2076-8052.2024.1(135).123-127
Abstract
The curve showing dependence of amount of silver in copper grains on the annealing temperature, compiled during the annealing process at different temperature has been theoretically analyzed. An attempt to develop a model based on the approach of nonequilibrium evolutionary thermodynamics to describe the annealing process was made. This model has been tested using computer simulation. Taking the previously developed model for megaplastic deformation within the framework of nonequilibrium evolutionary thermodynamics into account, the experiment was fully simulated, which consisted of annealing and further processing by plastic torsion deformation.
About the Authors
M. M. GordeiRussian Federation
Donetsk.
L. S. Metlov
Russian Federation
Donetsk.
References
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2. Straumal B. B., Kilmametov A. R., Baretzky B., Kogtenkova O. A., Straumal P. B., Lityńska-Dobrzyńska L., Chulist R., Korneva A., Zieba P. High pressure torsion of Cu-Ag and Cu-Sn alloys: Limits for solubility and dissolution // Acta Materialia. 2020. 195(4). 184-198. DOI: 10.1016/j.actamat.2020.05.055
3. Metlov L. S., Gordey M. M. Metod teoreticheskogo postroyeniya temperaturnoy krivoy otzhiga dlya dvukhkomponentnogo splava [Method for theoretically constructing an annealing temperature curve for a two-component alloy] // Donetsk Readings 2023: education, science, innovation, culture and challenges of our time: Materials of the VIII International Scientific Conference. Donetsk, October 25-27, 2023 Vol. 2: Physical, technical and computer sciences. Donetsk: Donetsk National University, 2023. P. 135-137.
Review
For citations:
Gordei M.M., Metlov L.S. Development of the theoretical annealing model for two-component systems. Title in english. 2024;(1(135)):123-127. (In Russ.) https://doi.org/10.34680/2076-8052.2024.1(135).123-127