Please use this identifier to cite or link to this item: http://elar.urfu.ru/handle/10995/131489
Title: Metal Degassing in Vacuum-Chamber of Circulating Vacuum Degasser of JSC EVRAZ NTMK
Authors: Metelkin, A. A.
Sheshukov, O. Y.
Tkachev, A. S.
Kovyazin, I. V.
Chiglintsev, A. V.
Shevchenko, O. I.
Issue Date: 2022
Publisher: Pleiades Publishing
Citation: Metelkin, AA, Sheshukov, OY, Tkachev, AS, Kovyazin, IV, Chiglintsev, AV & Shevchenko, OI 2022, 'Metal Degassing in Vacuum-Chamber of Circulating Vacuum Degasser of JSC EVRAZ NTMK', Steel in Translation, Том. 52, № 10, стр. 920-924. https://doi.org/10.3103/S0967091222100060
Metelkin, A. A., Sheshukov, O. Y., Tkachev, A. S., Kovyazin, I. V., Chiglintsev, A. V., & Shevchenko, O. I. (2022). Metal Degassing in Vacuum-Chamber of Circulating Vacuum Degasser of JSC EVRAZ NTMK. Steel in Translation, 52(10), 920-924. https://doi.org/10.3103/S0967091222100060
Abstract: Abstract: For smelting of high-quality metal for the applications in transport vehicles, it is necessary to limit the content of harmful impurities in it, including dissolved gases. For example, hydrogen content in the finished product should not exceed more than 2 ppm. In order to obtain low residual hydrogen content in steel in the converter shop of JSC EVRAZ NTMK, the transport metal is processed at circulating vacuuming plants. Circulating vacuum degasser is the last stage of steel processing before casting on continuous casting machine, so it is important to study and improve the technological processes in it. To investigate the physico-chemical processes occurring in this metallurgical unit, a hydrodynamic model was created for the system that includes the circulating vacuum degasser and the steel ladle. Based on theoretical calculations using physical model and experiments conducted, the main dependencies between the structural and technological parameters of the metallurgical unit were determined. The resulting equation makes it possible to determine the rate of metal circulation in vacuum chamber depending on the gas flow rate supplied to inlet snorkel and its inner diameter at circulating vacuuming plants designed for metal processing in steel ladles with a capacity of 140–180 tons. Theoretical calculations were confirmed by practical smelting in a steelmaking unit. It is shown that in order to obtain stable residual hydrogen content during the wear of lining of the inlet snorkel vacuum chamber, it is necessary to make changes in the technological process of vacuuming. Additionally, rational technological parameters of steel processing at the circulating vacuuming plant were determined on the basis of theoretical calculations. © 2022, Allerton Press, Inc.
Keywords: CIRCULATING VACUUM DEGASSER
DEGASSING
HYDROGEN REMOVAL
OUT-OF-FURNACE STEEL TREATMENT
RATIONAL PARAMETERS
CONTINUOUS CASTING
FLOW OF GASES
GAS PLANTS
LADLES
SMELTING
STEELMAKING
CIRCULATING VACUUM DEGASSER
HYDROGEN CONTENTS
HYDROGEN REMOVAL
IN-VACUUM
OUT-OF-FURNACE STEEL TREATMENT
RATIONAL PARAMETER
STEEL TREATMENT
THEORETICAL CALCULATIONS
VACUUM CHAMBERS
VACUUM DEGASSERS
DEGASSING
URI: http://elar.urfu.ru/handle/10995/131489
Access: info:eu-repo/semantics/openAccess
cc-by
License text: https://creativecommons.org/licenses/by/4.0/
RSCI ID: 59078206
SCOPUS ID: 85149917894
PURE ID: cf5972ca-ca39-4337-ad92-a90711b0b50a
36233282
ISSN: 0967-0912
DOI: 10.3103/S0967091222100060
Appears in Collections:Научные публикации ученых УрФУ, проиндексированные в SCOPUS и WoS CC

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