Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
It is really hard to determine the phenomena occurring during aluminum refining process using argon blowing through the liquid metal in industrial conditions. The solution of such problem is physical modelling. This kind of modelling gives possibility to determine the level of dispersion of the refining gas in liquid metal. Especially in steel metallurgy RTD (Residence Time Distribution) analysis and visualization process with some colour tracer, which can give extra information about time of mixing are very popularly used. Because the modelling research (especially visualization) is pictorial, the research was conducted to check if it is possible to estimate quantitatively impeller working effectiveness basing on determination of the RTD curves. The examined object was model of URO-200 batch refining reactor. The RTD curves was registered and discussed for three different impellers and four different variants of processing parameters (rotary impeller speed: 300-500 rpm, and gas flow rate: 15-20 l·min-1). Additionally, the process of mixing of the inert gas with water as a modelling agent was enabled to be observed due to introduction of colour tracer (KMnO4). Results obtained from both measuring methods were graphically presented, compared and shortly discussed.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
1909--1914
Opis fizyczny
Bibliogr. 25 poz., fot., rys., tab., wzory
Twórcy
autor
- Silesian University of Technology, Faculty of Materials Engineering and Metallurgy, ul. Krasińskiego 8, 40-019 Katowice, Poland
Bibliografia
- [1] B. Panic, Archives of Metallurgy and Materials 59, 2, 795-800 (2014).
- [2] B. Panic, K. Janiszewski, Metalurgija 53, 3, 331-334 (2014).
- [3] L. Bulkowski, U. Galisz, H. Kania, Z. Kudliński, J. Pieprzyca, J. Barański, Archives of Metallurgy and Materials 57, 1, 363-369 (2012).
- [4] D. Mazdumdar, R.I.L. Guthrie, ISIJ International 35, 1-20 (1995).
- [5] K. Michalek, K. Gryc, J. Moravka, Metalurgija 48, 4, 215-218 (2009).
- [6] D. Guao, G.A. Irons, Metallurgical and Materials Transactions B31, 1447-1455 (2010).
- [7] K. Seon-Hyo, R. J. Fruehan, Metallurgical Transactions B 18, 673-680 (1987).
- [8] A. Kumar, S. C. Koria, D. Mazdumdar, ISIJ International 44, 8, 1334-1341 (2004).
- [9] K. Chattopadhyay, M. Isac, R.I.L. Guthrie, ISIJ International 50, 3, 331-348 (2010).
- [10] K. Chattopadhyay, M. Hasan, M. Isac, R.I.L. Guthrie, Metallurgical and Materials Transactions B 41, 225-233 (2010).
- [11] S. Lopez-Ramirez, J.J. Barretto, J. Palafox-Ramos, R. D. Morales, D. Zacharias, Metallurgical and Materials Transactions B 32, 7, 615-627 (2001).
- [12] J. Palfox-Ramos, J. J. Barretto, S. Lopez-Ramirez, R. D. Morales, Ironmaking and Steelmaking 28, 2, 101-109, (2001).
- [13] H. Lei, Metallurgical and Materials Transactions B 46, 6, 2408-2413 (2015).
- [14] F. Zhang, S. Tanigutchi, K. Cai, Metallurgical and Materials Transactions B 31, 2, 253-266 (2000).
- [15] T. Merder, J. Pieprzyca, M. Saternus, Metalurgija 53, 2, 155-158 (2014).
- [16] P. Warzecha, M. Warzecha, T. Merder, Metalurgija 54, 3, 462-464 (2015).
- [17] Y. Kwon, J. Zhang, H-G. Lee, ISIJ International 46, 2, 257-266 (2006).
- [18] E. Mancilla, W. Cruz-Mendez, I.E. Garduno, C. Gonzalez-Rivera, M.A. Ramirez-Argaze, G. Ascanio, Chemical Engineering Research and Design 118, 158-169 (2017).
- [19] E. R. Gonzalez, R. Zenit, C. Gonzalez-Rivera, G. Trapaga, M. A. Ramirez-Argaez, Metallurgical nad Materials Transactions B 44, 974-983 (2013).
- [20] J. L. Camacho-Martinez, M. A. Ramirez-Argaez, A, Juarez-Hernandez, C.Gonzalez-Rivera, G. Trapaga-Martinez, Materials and Manufacturing Processes 27, 556-560 (2012).
- [21] M. Saternus, T. Merder, Metalurgija 54, 1, 27-30 (2015).
- [22] M. Saternus, Metalurgija 50, 4, 257-260 (2011).
- [23] M. Saternus, J. Botor, Metalurgija 48, 175-179, (2009).
- [24] M. Saternus, T. Merder, J, Pieprzyca, Archives of Metallurgy and Materials 60, 4, 2887-2894 (2015).
- [25] K. Marcinek, J. Pieprzyca, Hutnik 83, 2, 51-55 (2016).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d78a719f-814a-4bca-9f6e-b029b88bb2e3