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Abstrakty
Metallurgical slags are an object of the increasing interest in terms of the possibility of their utilization, especially as materials used in the construction and road building industries, in the foundry industry for refining and purifying liquid alloys, the production of abrasives for surface treatment of remanufactured machine parts, as mine backfill materials. Metallurgical slags, in order to be used in foundry processes, should be characterized by the stability of the chemical composition. This paper presents the results of statistical analysis calculations, in which using a specific group f samples, knowing their chemical composition, the mean value Ā, variance Ϭ2, standard deviation Ϭ and the classical coefficient of variation V were determined. The research and its results report the amount of variation in considered components of the slags.
Czasopismo
Rocznik
Tom
Strony
145--150
Opis fizyczny
Bibliogr. 15 poz., tab., wykr.
Twórcy
autor
- Silesian University of Technology, Chair of Production Engineering, Zabrze, Poland
Bibliografia
- [1] Sybilski, D., Kraszewski, C. (2004). Evaluation and testing of selected industrial waste for use in road constructions. Warszawa: Instytut Badawczy Dróg i Mostów w Warszawie. (in Polish).
- [2] Karpiński, J., Pałczyński, E. (1995). Device for gas-slag refining and modification of liquid Al alloys with a rotating head "URM-l". A new method of refining and modifying liquid Al alloys using a device with a rotating head and auxiliary preparations for die casting. Kraków: Wyd. Instytut Odlewnictwa, p. 19. (in Polish).
- [3] Rzechuła, J. (1994). Economic use of waste abrasive from copper slag. Fizykochemiczne Problemy Mineralurgii. 28, 207-218. (in Polish).
- [4] Giergiczny, Z. (2005). Concrete on cements containing granulated blast furnace slag, and the requirements of the PN-EN 206-1 standard. VII Sympozjum Naukowo-Techniczne Reologia w Technologii Betonu. Gliwice. (pp. 5-15). (in Polish).
- [5] da Silva Magalhães, M., Faleschini, F., Pellegrino, C. & Brunelli, K. (2017). Cementing efficiency of electric arc furnace dust in mortars. Construction and Building Materials. 157, 141-150. https://doi.org/10.1016/j.conbuildmat. 2017.09.074.
- [6] Feleschini, F., Brunelli, K., Zanini, M.A., Dabala, M. & Brunelli, K. (2016). Electric arc furnace slag as coarse recycled aggregate for concrete production. Journal of Sustainable Metallurgy. 2(1), 44-50. https://doi.org/10.1007/s40831-015-0029-1.
- [7] Krupka, D., Sitko, J., Ochab, B. and others, (2006). Development of zinc production at the Boleslaw Zinc Plant, The IV International Conference Zinc ‘2006, Plovdiv, Bułgaria, (pp. 197-207).
- [8] Jonczy, I. & Lata, L. (2013). Characteristics of the chemical composition of converter and blast furnace slags. Górnictwo i Geologia. 4(8), 51-61. (in Polish).
- [9] Łowinska-Kluge, A., Piszora, P., Darul, J., Kantel, T. & Gambal, P. (2011). Characterization of chemical and physical parameters of post copper slag. Central European Journal of Physics. 9, 380-386. DOI:10.2478/s11534-011-0010-y.
- [10] Krupka, D., Sitko, J., Dutrizac, J. & James, G.E. (2001). Zinc Electrolysis Plant – BIG RIVER ZINC, Sauget w USA. Rudy Metale. 46(10), 461. (in Polish).
- [11] Sitko, J. (2015). Analysis of the possibility of processing by-products of metallurgical products. Systemy Wspomagania w Inżynierii Produkcji. 2(11), 192-200. Inżynieria Systemów Technicznych. Red. Jarosław Brodny, Monografia. (in Polish).
- [12] Koronacki, J., Mielniczuk, J. (2006). Statistics for students of technical and natural sciences. Warszawa: WNT. ISBN 83-204-3242-1. (in Polish).
- [13] Łomnicki, A. (2005). Introduction to statistics for naturalists. WN PWN. ISBN 83-01-13979-X. (in Polish).
- [14] Borowski, M. (2016). Aid materials for students to study statistics. Stalowa Wola: Wydawnictwo Diecezjalne i Drukarnia w Sandomierzu. (in Polish).
- [15] Woźniak, M. (2002). General statistics. Kraków: Wydawnictwo Akademii Ekonomicznej w Krakowie. (in Polish).
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023)
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-57d11df9-f1b2-4e12-ab92-20f2b34b90aa