Ways to Intensify Heat Exchange Processes in the Mold of a Continuous Casting Machine

Processy litʹâ, 2019, Tom 134, №2, p.3-14

Authors

  • A. S. Nuradinov Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv
  • A. V. Nogovitsyn Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv
  • I. A. Nuradinov Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv

Keywords:

caster mold, heat transfer, gas gap, vibration, artificial roughness, heat transfer coefficient, amount of heat

Abstract

Received 09.01.2019

UDK 536.24:66.065.5

By the method of physical modeling, the processes of heat transfer between the solidified metal and the caster mold during continuous casting of steel are studied. The laws governing changes in the amount of heat transferred from the liquid metal to the solidified crust, from the surface of the workpiece to the wall of the mold and from it to the cooling water are established. Practical recommendations are proposed for increasing the efficiency of heat transfer for the indicated stages of heat transfer from the solidifying metal to the cooling water.

Author Biographies

A. S. Nuradinov, Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv

Doctor of Engineering Sciences, Leading Researcher

A. V. Nogovitsyn, Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv

Doctor of Engineering Sciences, Deputy Director

I. A. Nuradinov, Physico-Technological Institute of Metals and Alloys NAS of Ukraine, Kyiv

Leading Engineer

References

Dymnich, A. H., Troyanskiy, A. A. (2009 ) Issues of heat and mass transfer in steelmaking processes. Donetsk: DVNZ «DonNTU», 582 s. [in Russian].

Kutateladze, S. S. (1979) Fundamentals of the theory of heat transfer. Moscow: Atomizdat, 414 s. [in Russian].

Yefimov, V.A., Eldarkhanov, A.S. (2004) Technologies of modern metallurgy. Moscow: Novyye tekhnologii, 784 s.[in Russian].

Nuradinov, A. S. (2006) Heat exchange processes in the formation of continuously cast billets. Liteyshchik Rossii, no. 7, pp. 34−37 [in Russian].

Nuradinov, A. S., Eldarkhanov, A. S., Taranov, E. D. (2006) Heat exchange processes in the formation of continuous castings in the field of elastic oscillations. Stal, no. 6, pp. 51−52 [in Russian].

Eldarkhanov, A .S., Nuradinov, A. S., Saipova, L.H-A. et al. (2016) Intensification of heat transfer through the gas gap in the crystallizer of the CCM. Stal, no. 4, pp. 8−11 [in Russian].

Nuradinov, A. S., Eldarkhanov, A. S., Dymnich, A. H. et al. (2016) Intensification of heat transfer through the gas gap in the crystallizer of the CCM. Protsessy litya, no. 2, pp. 42−51 [in Russian].

Nuradinov, A. S., Uzdiyeva, N. S., Akhtayev, S. S.-S. et al. (2016) Method of determining the heat transfer coefficient through the gas gap in the mold of the CCM. Groznenskiy yestestvennonauchnyy byulleten, no. 2, pp. 65−70 [in Russian].

Nuradinov, A. S., Eldarkhanov, A. S., Uzdiyeva, N. S. et al. (2017) The speed of the coolant in the mold caster as a factor of intensification of heat exchange processes in it. Stal, no. 3, pp. 19−21 [in Russian].

Nuradinov, A. S., Nogovitsyn, A. V., Nuradinov, I. A. et al. (2017) Method of determining the heat transfer coefficient of the coolant in the mold of the CCM . Protsessy litya, no. 2, pp. 45−52 [in Russian].

Eldarkhanov, A. S., Nuradinov A, S., Akhtayev, S. S.-S. et al. (2017) Intensification of heat transfer in the crystallizer of the CCM. Stal, no. 5, pp. 21−25 [in Russian].

Nuradinov, A. S., Nogovitsyn, A. V., Nuradinov, I. A. et al. (2017) The influence of the shape of the heat exchange surface on the efficiency of the thermal operation of the CCM. Protsessy litya, no. 3, pp. 43−51 [in Russian].

Skvortsov, A. A., Akimenko, A. D., Ulyanov, V. A. (1991) The impact of external influences on the process of forming ingots and billets. Moscow: Metallurgiya, 216 s.[in Russian].

Borshanskiy, V. M., Kutateladze, S. S., Novikov, I. I. (1976) Liquid metal coolants. Moscow: Atomizdat, 146 s.[in Russian].

Kutateladze, S. S., Styrikovich, M. A. (1976)Hydrodynamics of gas-liquid systems. Moscow: Energiya, 296 s.[in Russian].

Published

01-05-2019

How to Cite

Nuradinov А. С. ., Nogovitsyn О. В. ., & Nuradinov І. А. . (2019). Ways to Intensify Heat Exchange Processes in the Mold of a Continuous Casting Machine: Processy litʹâ, 2019, Tom 134, №2, p.3-14. Casting Processes, 134(2), 3–14. Retrieved from https://www.plit-periodical.org.ua/index.php/plit/article/view/137

Issue

Section

NEW METHODS AND ADVANCED CASTING TECHNOLOGIES

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