{"id":1712,"date":"2020-12-15T11:29:35","date_gmt":"2020-12-15T09:29:35","guid":{"rendered":"https:\/\/jrn.isi.gov.ua\/?page_id=1712"},"modified":"2023-08-12T21:46:34","modified_gmt":"2023-08-12T18:46:34","slug":"1712-2","status":"publish","type":"page","link":"https:\/\/jrn.isi.gov.ua\/?page_id=1712&lang=en","title":{"rendered":"DOI: 10.52150\/2522-9117-2019-33-205-214"},"content":{"rendered":"<p style=\"text-align: left;\"><strong><a href=\"https:\/\/jrn.isi.gov.ua\/sb\/33%20Articlel%2004%20print\/33%20205-214.pdf\"><img loading=\"lazy\" decoding=\"async\" class=\"alignnone wp-image-1799\" src=\"https:\/\/jrn.isi.gov.ua\/wp-content\/uploads\/2021\/01\/Button-300x99.png\" alt=\"\" width=\"194\" height=\"64\" \/><\/a><\/strong><\/p>\n<p style=\"text-align: left;\"><strong>Petrov Oleksandr Pilipovich,<\/strong> Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academican Starodubova square, 1, Dnipro, Ukraine, 49107; e-mail: alex.f.petrov@gmail.com, ORCID 0000-0001-7855-9267<br \/>\n<strong>Snigura Iryna Romanivna,<\/strong> Junior Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academic square Starodubova, 1, Dnipro, Ukraine, 49107<br \/>\n<strong>Golovko Lyudmila Alexandrovna,<\/strong> PhD in Chemistry, Senior Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academican Starodubova square, 1, Dnipro, Ukraine, 49107<br \/>\n<strong>Tsyupa Natalia Oleksandrivna,<\/strong> PhD (Engin.), Senior Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academican Starodubova square, 1, Dnipro, Ukraine, 49107; e-mail: tysya6669@mail.ru, t.kirill.90@yandex.com<\/p>\n<h2 style=\"text-align: left;\"><strong>Prediction of melting time of complex ferroalloys by physical and\u00a0<\/strong><strong>chemical modeling<\/strong><\/h2>\n<p style=\"text-align: left;\"><strong>Summary.<\/strong> The purpose of this work is to implement a new approach to the description of the duration of melting (dissolution) of complex new generation ferroalloys during the deoxidation and doping of a metal melt. This approach is aimed at developing a methodology and criteria for the quantification and accounting of the micro-heterogeneity of multicomponent metal melts and their prediction on such\u00a0 important for steelmaking production characteristics as the melting time of ferroalloys, the description of the inter-mine interaction, which allows a deeper understanding of the process. deoxidation and refining of steel. In the work, the approach developed in the Institute of Ferrous Metallurgy of the National Academy of Sciences of Ukraine to solve problems of modeling of non-conformities that relate the composition, structure and properties of melts is used in the work. It is based on the original concept of physicochemical<br \/>\nmodeling of the processes of interatomic interaction in melts and solutions, developed by E.V. Prihodko. According to it, metal melts are considered as chemically unified systems. Changing their composition affects the complex of physicochemical properties due to changes in the parameters of their electronic<br \/>\nstructure. The method of calculation of criteria (\u2206Zy and \u2206d), characterizing the degree of difference between the electronic and structural state of the melt, as a chemically unified system, from the mechanical mixture of their initial components and the parameter was used to evaluate and account for the influence of the micron homogeneity of the structure of the metal melts of ferroalloy production. \u03c1l, which takes into account the cluster spin in metal melts. Using these criteria and the available experimental data, analytical<br \/>\ndependences were obtained to calculate the melting time of complex (mamanganese, vanadium, niobium and boromatic) ferroalloys of the new generation. This will allow them to evaluate their effectiveness of application, which is associated with the highest assimilation of the main elements that affect.<br \/>\n<strong>Keywords:<\/strong> ferroalloys, metal melts, parameters of interatomic interaction, predictive models<\/p>\n<p style=\"text-align: left;\"><strong>References<\/strong><br \/>\n1. Gavro L.P. Issledovaniya kinetiki plavleniya ferrosplavov v zhidkoj stali pri raskislenii v kovshe. Sbornik trudov \u00abVoprosy teorii i praktiki razlivki stali v izlozhnicy i problemy uluchsheniya kachestva stali\u00bb. \u2013 M.:<br \/>\nMetallurgiya. \u2013 1983. \u2013 S. 48-52.<br \/>\n2. Porutchikov Yu.P. Ustanovka dlya issledovaniya vzaimodejstviya metallicheskih chastic s rasplavami. [Yu.P. Porutchikov, S.I. Fominyh, R.K. Mysik i dr.]. Zavodskaya laboratoriya. \u2013 1981. \u2013 T. 47. \u2013 \u2116 10. \u2013 S. 31-33.<br \/>\n3. Vihlevshuk V.A. Eksperimentalnoe issledovanie mikrolegi-ruyushih ferrosplavov i ligatur v stali. [V.A. Vihlevshuk, V.P. Piptyuk, V.A. Kondrashkin, Yu.B. Badogin]. Sbornik trudov \u00abProizvodstvo stali v konverternyh i martenovskih cehah\u00bb. \u2013 M.: Metallurgiya. \u2013 1988. \u2013 S. 75- 80.<br \/>\n4. Ignatev V.S. Izuchenie svojstv ferrosplavov i ligatur dlya mikrolegirovaniya i raskisleniya stali. [V.S. Ignatev, V.A. Vihlevshuk, V.M. Chernogreckij i dr.]. Izv. VUZov. Chernaya metallurgiya. \u2013 1988. \u2013 \u2116 6. \u2013 S. 37-42.<br \/>\n5. Agryropoulos S.A. Dissolution characteristics of ferroalloys in liquid steel. Iron and Steelmaker. \u2013 1984. \u2013 \u2116 11. \u2013 P. 48-57.<br \/>\n6. Ohno R. Steady-state rates of dissolution of stationary iron, cobalt and nikel cylinders in liquid cooper. Metallurgical Transactions. \u2013 1982. \u2013 V. 13B. \u2013 P. 175-183.<br \/>\n7. Noskov A.S., Zhuchkov V.I., Zavyalov A.L. Plavlenie ferrosplavov v zhelezouglerodistom rasplave. Izv. Vuzov. Chernaya metallurgiya. \u2013 1985. \u2013 \u2116 10. \u2013 S. 32-37.<br \/>\n8. Pankratov N.A., Ogurcov A.P., Krivko E.M. K voprosu o matematicheskom modelirovanii processa plavleniya ferrosplavov v kovshe. Izv. Vuzov. Chernaya metallurgiya. \u2013 1987. \u2013 \u2116 9. \u2013 S. 29-31.<br \/>\n9. Ignatev V.S. Izuchenie svojstv ferrosplavov i ligatur dlya mikrolegirovaniya i raskisleniya stali. [V.S. Ignatev, V.A. Vihlevshuk, V.M. Chernogreckij i dr.]. \/\/ Izv. Vuzov. Chernaya me-tallurgiya. \u2013 1988. \u2013 \u2116 6. \u2013 S. 37-42.<br \/>\n10. Noskov A.S., Zavyalov A.L., Zhuch-kov V.I. Opredelenie skorosti plavleniya ferrosplavov v metallicheskih rasplavah. &#8211; Sverdlovsk: UNC AN SSSR. \u2013 1983. \u2013 48 s.<br \/>\n11. Pavlyuchenkov I.A. Teplo-massoobmennye processy pri plavlenii tverdyh materialov v zhidkom rasplave staleplavilnyh agregatov. Dis. kand. tehn. nauk: 05.16.02. \u2013 Dneprodzerzhinsk. \u2013 1983. \u2013 150 s.<br \/>\n12. Parimonchik I.B., Kazachkov I.P., Rezchik V.G. Modelirovanie processa rastvoreniya ferrosplavov v staleplavilnom kovshe. Metallurgiya i koksohimiya. \u2013 1972. \u2013 \u2116 31. \u2013 S. 62-65.<br \/>\n13. Lozovaya E.Yu. Izuchenie kinetiki plavleniya ferrosplavov v zhelezouglerodistom rasplave. Avtoref. dis. kand. tehn. nauk: 05.16.02. \u2013 Ekaterinburg. \u2013 2001. \u2013 23 s.<br \/>\n14. Prihodko E.V. Effektivnost kompleksnogo legirovaniya sta-lej i splavov. &#8211; K.: Naukova dumka. \u2013 1995. \u2013 292s.<br \/>\n15. Prihodko E.V. Prognozirovanie fiziko-himicheskih i teplo-fizicheskih svojstv ferrosiliciya standartnyh marok.[E.V. Prihodko, V.P. Piptyuk, A.F. Petrov, S.V. Grekov]. \u00abMetallurgicheskaya i gornorudnaya promyshlennost\u00bb. \u2013 Dnepropetrovsk. \u2013 2009. \u2013 \u21165. \u2013 S. 17-20.<br \/>\n16. Prihodko E.V., Petrov A.F. Metodika prognozirovaniya fizicheskih i teplofizicheskih svojstv margancevyh ferrosplavov v zavisimosti ot sostava. \u00abMetallurgicheskaya i gornorudnaya promyshlennost\u00bb. \u2013 Dnepropetrovsk. \u2013 2008. \u2013 \u21166. \u2013 S. 27-30.<br \/>\n17. Prihodko E.V. Prognozirovanie fiziko-himicheskih svojstv oksidnyh system. [E.V. Prihodko, D.N. Togobickaya, A.F. Hamhotko, D.A. Stepanenko]. Dnepropetrovsk: Porogi. \u2013 2013. \u2013 344s.<br \/>\n18. Zhuchkov V.I., Noskov A.S., Zavyalov A.L. Rastvorenie ferrosplavov v zhidkom metalle\/ &#8211; Sverdlovsk: UNC AN SSSR. \u2013 1990. \u2013 134 s.<br \/>\n19. Togobickaya D.N., Golovko L.A., Snigura I.R. Issledovanie mikroneodnorodnosti odnokomponentnyh metallicheskih rasplavov v oblasti nadlikvidusnyh temperatur na osnove parametrov mezhatomnogo vzaimodejstviya. VII Mezhdunarodnaya nauchno-prakticheskaya konferenciya \u00abNauka v sovremennom mire\u00bb. \u2013 Kiev, 19 marta 2016 g. \u2013 S. 37 \u2013 44<br \/>\n20. Petrov A.F., Prihodko E.V., Vorona E.N. Fiziko-himicheskie kriterii dlya prognozirovaniya termodinamicheskih svojstv mnogokomponentnyh metallicheskih system. \u00abFundamentalnye i prikladnye problemy cher-noj metallurgii\u00bb. Sb. nauchn. tr. ISI NANU. \u2013 Dnepropetrovsk. \u2013 2005. \u2013 Vyp.11. \u2013 S. 170\u2013179.<br \/>\n21. Petrov A.F. Prognozirovanie fiziko-himicheskih i teplofizi-cheskih svojstv borsoderzhashih ferrosplavov. [A.F. Petrov, O.V. Kuksa, L.A. Golovko, S.V. Grekov]. \u00abSistemni tehnologiyi. Regio-nalnij mizhvuzivskij zbirnik naukovih prac\u00bb.\u2013 Dnipro: \u2013 2016. \u2013 \u21162(103). \u2013 S. 44\u201349.<br \/>\n22. Petrov A.F. Prognozirovanie fiziko-himicheskih harakteristik nikelsoderzhashih ferrosplavov. [A.F. Petrov, O.V. Kuksa, L.A. Golovko, N.E. Hodotova]. Sb. tezisov dokladov MNTK \u00abUniversitetskaya nauka 2017\u00bb. GVUZ \u00abPGTU\u00bb \u2013 Mariupol. \u2013 2017. \u2013 S.53-55.<\/p>\n","protected":false},"excerpt":{"rendered":"<p>Petrov Oleksandr Pilipovich, Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academican Starodubova square, 1, Dnipro, Ukraine, 49107; e-mail: alex.f.petrov@gmail.com, ORCID 0000-0001-7855-9267 Snigura Iryna Romanivna, Junior Researcher, Iron and Steel Institute named after Z.I. Nekrasov of the NAS of Ukraine, Academic square Starodubova, 1, Dnipro, Ukraine, 49107 Golovko Lyudmila [&hellip;]<\/p>\n","protected":false},"author":1,"featured_media":0,"parent":0,"menu_order":0,"comment_status":"closed","ping_status":"closed","template":"","meta":{"footnotes":""},"class_list":["post-1712","page","type-page","status-publish","hentry"],"_links":{"self":[{"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/pages\/1712","targetHints":{"allow":["GET"]}}],"collection":[{"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/pages"}],"about":[{"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/types\/page"}],"author":[{"embeddable":true,"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/users\/1"}],"replies":[{"embeddable":true,"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=%2Fwp%2Fv2%2Fcomments&post=1712"}],"version-history":[{"count":3,"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/pages\/1712\/revisions"}],"predecessor-version":[{"id":3928,"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=\/wp\/v2\/pages\/1712\/revisions\/3928"}],"wp:attachment":[{"href":"https:\/\/jrn.isi.gov.ua\/index.php?rest_route=%2Fwp%2Fv2%2Fmedia&parent=1712"}],"curies":[{"name":"wp","href":"https:\/\/api.w.org\/{rel}","templated":true}]}}