Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The device under examination is a mould of a capacity of 0.5 Mg and with inner cross-section of 280×400 mm. The virtual model of the facility under investigation was made using Gambit, DesignModeler and Meshing programs. Computer simulation of the liquid steel flow and mould flux behaviour in turbulent motion conditions was done using the Ansys-Fluent® computer program. On the basis of earlier researches the volume of fluid (VOF) model was applied. Based on computer simulations carried out, steel flow and flux behaviour fields and curves of flux mould entrainment concentration were obtained. The results obtained from numerical simulation were compared with the data obtained during bloom casting under industrial conditions. Based on the obtained information on the interaction of steel with mould flux, the region was determined, in which conditions likely to favour the entrainment of slag portions into the forming bloom exist.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
2013--2020
Opis fizyczny
Bibliogr. 23 poz., , rys., wykr., wzory
Twórcy
autor
- Częstochowa University of Technology, Department of Metals Extraction and Recirculation, Faculty of Production Engineering and Materials Technology, 19 Armii Krajowej Ave, 42-200 Czestochowa, Poland
autor
- Częstochowa University of Technology, Department of Metals Extraction and Recirculation, Faculty of Production Engineering and Materials Technology, 19 Armii Krajowej Ave, 42-200 Czestochowa, Poland
autor
- Arcelormittal Poland S.A., Unit in Dąbrowa Górnicza, 92 J. Piłsudskiego Av., 41-308 Dąbrowa Górnicza, Poland
Bibliografia
- [1] B. G. Thomas, M. S. Jenkins, R. B. Mahapatra, Ironmak. Steelmak. 31, 485-494 (2004).
- [2] O. Bode, K. Schwerdtfeger, H. G. Geck, F. Höfer, Ironmak. Steelmak. 35, 137-145 (2008).
- [3] Y. Chen, M. F. Xiao, G. R. Wu, J. Iron and Steel Res. 17, 1-5 (2010).
- [4] X. B. Li, H. Ding, Z. Y. Tang, J. C. He, Int. J. Miner. Met. Mater. 19, 21-29 (2012).
- [5] V. V. Kulakov, A. V. Yakovlev, T. N. Ryakhov, P. N. Tkachev, Y. E. Kan, Metallurgist. 30, 398-399 (1986).
- [6] T. Telejko, Z. Malinowski, M. Rywotycki, Arch. Met. Mater. 54, 837-844 (2009).
- [7] S. Luo, M. Y. Zhu, C. Ji, Y. Chen, Ironmak. Steelmak. 37, 140-146 (2010).
- [8] M. Alizadeh, Mat. Letters. 91, 146-149 (2013).
- [9] S. Ogibayashi, M. Kobayashi, M. Yamada, T. Mukai, ISI J Int. 31, 1400-1407 (1991).
- [10] K. C. Mills, A. B. Fox, ISI J Int. 43, 1479-1486 (2003).
- [11] A. Kiyose, K.-I. Miyazawa, W. Yamada, K. Watanabe, H. Takahashi, ISIJ Int. 36, S155-S158 (1996).
- [12] W. Wang, B. Lu, D. Xiao, Metall. Mater. Trans. B. 47, 384-389 (2016).
- [13] E. Torres-Alonso, R. D. Morales, S. García-Hernández, A. Najera-Bastida, A. Sandoval-Ramos, Metall. Mater. Trans. B. 39, 840-852 (2008).
- [14] Y. J. Xia, F. M. Wang, J. L. Wang, G. Z. Li, Int. J. Miner. Met. Mater. 18, 562-569 (2011).
- [15] H. Sun, J. Zhang, Metall. Mater. Trans. B. 45, 1133-1149 (2014).
- [16] Z. Zhao, H. Ni, H. Zhang, G. Chen, W. Yi, J. Hong, Ironmak. Steelmak. 41, 539-546 (2014).
- [17] Y. Tang, G. Hackl, G. Nitzl, C. Eglsäer, Proc. of 8th European Continuous Casting Conf., Graz, Austria, 487-497 (2014).
- [18] M. Jeong, C. Choi, M. Y. Ha, S. J. Kim, J. K. Park, K. S. Oh, Met. Mater. Int. 21, 303-310, (2015).
- [19] H. Odenthal, I. Lemanowicz, R. Gorissen, H. Pfeifer, Metall. Mater. Trans. B. 33, 163-172 (2002).
- [20] E. Torres-Alonso, R. D. Morales, S. García-Hernández, J. Palafox-Ramos, Metall. Mater. Trans. B. 41, 583-597 (2010).
- [21] A. Cwudziński, Metall. Res. Tech. 111, 45-55 (2014).
- [22] S. Seetharaman (Ed.), A. McLean (Co-Ed.), R. Guthrie (Co-Ed.), S. Seetharaman (Co-Ed.), Treatise on Process Metallurgy, vol. 2, Process Phenomena, 2014, Elsevier.
- [23] S. Seetharaman (Ed.), A. McLean (Co-Ed.), R. Guthrie (Co-Ed.), S. Seetharaman (Co-Ed.), Treatise on Process Metallurgy, vol. 3, Industrial Processes, 2014, Elsevier.
Uwagi
EN
This scientific work has been financed from the resources of Ministry of Science and Higher Education as Statutory Researches
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d9a7c212-5f7e-4df6-adcf-2277dd1a3f1a