Nanostructural theory of metal melts. Foundry production and metallurgy
https://doi.org/10.21122/1683-6065-2020-3-7-9
Abstract
It has been shown that atomic and atomic cluster theories cannot be the basis for theories of crystallization and modification of metals and alloys. Based on thermodynamic calculations, a nanostructural theory of metal melts has been developed. In this theory, the main structural elements are not atoms, but nanocrystals. They are thermodynamically stable in the metal melt, so they determine its structure and properties. Crystallization centers consist of nanocrystals. The intensity of aggregation of nanocrystals is determined by the concentration of demodifying surface-active elements. The action of modifiers is explained by the process of linking these elements. Nanostructural theory of metal melts explains the mechanism of action of modifying non-metallic inclusions and intermetallics, the effect of re-modification, high crystallization rate with high cooling intensity of the metal melt. Nanostructural theory of metal melts is the basis for theories of crystallization and modification of metals and alloys.
About the Authors
E. I. MarukovichBelarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli str.
V. Yu. Stetsenko
Belarus
Mogilev, Belarus, 11, Bialynitskogo-Biruli str.
References
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2. Marukovich E. I., Stetsenko V. Yu. Nauchnaja problema metallicheskih rasplavov. Puti reshenija [The scientific problem of metal melts. Solutions]. Metallurgiya mashinostroeniya = Metallurgy of Machinery Building, 2018, no. 5, pp. 7–9.
3. Marukovich E. I., Stetsenko V. Yu. Termodinamicheskie osnovy plavleniya metallov [Thermodynamic bases of metal melting]. Lit’e i metallurgiya = Foundry production and metallurgy, 2020, no. 1, pp. 14–17.
4. Marukovich E. I., Stetsenko V. Yu. Modificirovanie splavov [Modifying of alloys]. Minsk, Belaruskaya navuka Publ., 2009. 192 p.
Review
For citations:
Marukovich E.I., Stetsenko V.Yu. Nanostructural theory of metal melts. Foundry production and metallurgy. Litiyo i Metallurgiya (FOUNDRY PRODUCTION AND METALLURGY). 2020;(3):7-9. (In Russ.) https://doi.org/10.21122/1683-6065-2020-3-7-9