Impact of mould powder on physicochemical properties of slag in the continuous casting process
Authors
Manojlović, VasoKamberović, Željko

Sokić, Miroslav

Marković, Branislav

Gavrilovski, Milorad
Radosavljević, Slobodan
Contributors
Dolić, NatalijaZovko Brodarac, Zdenka
Brajčinović, Sandra
Conference object (Published version)

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Mould powder is essential for the reliable operation of the continuous casting system and the quality
of the cast steel. The very responsible roles of mould powder are fulfilled by selecting combinations
of components that affect physicochemical properties of the resulting liquid slag, which lubricate the
walls among the crystallizer and slab. The contribution of mould powder refers to the range of
melting temperature and speed and the viscosity of glassy or crystalline slag and formation
temperature. These connections are the research subject in this paper, emphasizing the functional
dependence of viscosity and liquidus temperature of mould powder with its material composition.
This research investigates the impact of basicity, alkali oxides (Na2O and K2O), and carbon-free
content on viscosity and liquidus temperature of mould powder in the continuous casting process.
The liquidus temperature of mould powder was obtained empirically after a year of experimental
examination, ...and viscosity was determined using several models. Based on experimental
investigation, we show empirical parameters for equitation of liquidus temperature of mould
powder. Also, using established equations, we presented isolines for viscosity and liquidus
temperature with experimental parameters.
Keywords:
casting powder / continuous casting / viscosity / liquidus temperatureSource:
19th INTERNATIONAL FOUNDRYMEN CONFERENCE, 2021, 403-409Publisher:
- Sisak : Univerzitet u Zagrebu, Metalurški Fakultet
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Institut za tehnologiju nuklearnih i drugih mineralnih sirovinaTY - CONF AU - Manojlović, Vaso AU - Kamberović, Željko AU - Sokić, Miroslav AU - Marković, Branislav AU - Gavrilovski, Milorad AU - Radosavljević, Slobodan PY - 2021 UR - https://ritnms.itnms.ac.rs/handle/123456789/959 AB - Mould powder is essential for the reliable operation of the continuous casting system and the quality of the cast steel. The very responsible roles of mould powder are fulfilled by selecting combinations of components that affect physicochemical properties of the resulting liquid slag, which lubricate the walls among the crystallizer and slab. The contribution of mould powder refers to the range of melting temperature and speed and the viscosity of glassy or crystalline slag and formation temperature. These connections are the research subject in this paper, emphasizing the functional dependence of viscosity and liquidus temperature of mould powder with its material composition. This research investigates the impact of basicity, alkali oxides (Na2O and K2O), and carbon-free content on viscosity and liquidus temperature of mould powder in the continuous casting process. The liquidus temperature of mould powder was obtained empirically after a year of experimental examination, and viscosity was determined using several models. Based on experimental investigation, we show empirical parameters for equitation of liquidus temperature of mould powder. Also, using established equations, we presented isolines for viscosity and liquidus temperature with experimental parameters. PB - Sisak : Univerzitet u Zagrebu, Metalurški Fakultet C3 - 19th INTERNATIONAL FOUNDRYMEN CONFERENCE T1 - Impact of mould powder on physicochemical properties of slag in the continuous casting process EP - 409 SP - 403 ER -
@conference{ author = "Manojlović, Vaso and Kamberović, Željko and Sokić, Miroslav and Marković, Branislav and Gavrilovski, Milorad and Radosavljević, Slobodan", year = "2021", abstract = "Mould powder is essential for the reliable operation of the continuous casting system and the quality of the cast steel. The very responsible roles of mould powder are fulfilled by selecting combinations of components that affect physicochemical properties of the resulting liquid slag, which lubricate the walls among the crystallizer and slab. The contribution of mould powder refers to the range of melting temperature and speed and the viscosity of glassy or crystalline slag and formation temperature. These connections are the research subject in this paper, emphasizing the functional dependence of viscosity and liquidus temperature of mould powder with its material composition. This research investigates the impact of basicity, alkali oxides (Na2O and K2O), and carbon-free content on viscosity and liquidus temperature of mould powder in the continuous casting process. The liquidus temperature of mould powder was obtained empirically after a year of experimental examination, and viscosity was determined using several models. Based on experimental investigation, we show empirical parameters for equitation of liquidus temperature of mould powder. Also, using established equations, we presented isolines for viscosity and liquidus temperature with experimental parameters.", publisher = "Sisak : Univerzitet u Zagrebu, Metalurški Fakultet", journal = "19th INTERNATIONAL FOUNDRYMEN CONFERENCE", title = "Impact of mould powder on physicochemical properties of slag in the continuous casting process", pages = "409-403" }
Manojlović, V., Kamberović, Ž., Sokić, M., Marković, B., Gavrilovski, M.,& Radosavljević, S.. (2021). Impact of mould powder on physicochemical properties of slag in the continuous casting process. in 19th INTERNATIONAL FOUNDRYMEN CONFERENCE Sisak : Univerzitet u Zagrebu, Metalurški Fakultet., 403-409.
Manojlović V, Kamberović Ž, Sokić M, Marković B, Gavrilovski M, Radosavljević S. Impact of mould powder on physicochemical properties of slag in the continuous casting process. in 19th INTERNATIONAL FOUNDRYMEN CONFERENCE. 2021;:403-409..
Manojlović, Vaso, Kamberović, Željko, Sokić, Miroslav, Marković, Branislav, Gavrilovski, Milorad, Radosavljević, Slobodan, "Impact of mould powder on physicochemical properties of slag in the continuous casting process" in 19th INTERNATIONAL FOUNDRYMEN CONFERENCE (2021):403-409.