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The Results of the Brass Refining Process in the Reducer Conditions

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article contains information concerning of the analysis the possibility of defining refinery qualities of the slag based thermo-physical and thermo-dynamical data. It was showed the brass refining with the many-carbide reagents introduced i n to the slag. The paper presents the results of the structure analysis of the brass after carbide slag refining in the industrial conditions. The results of the macrostructure analysis have confirmed the argument on high reducing effectiveness of manganese and aluminium carbide used during CuZn39Pb2 alloy melting. The X-Ray microanalysis of the ingot cross-section has shown considerable discrepancies in the disposition of the inclusions. This effects showed on the great influence of reduction melting condition in to the brass melting.
Słowa kluczowe
Rocznik
Strony
21--24
Opis fizyczny
Bibliogr. 14 poz., rys., tab., wykr.
Twórcy
  • AGH University of Science and Technology, Al. Mickiewicza 30, 30-059 Kraków, Poland
autor
  • State School of Higher Vocational Education, Piotra Skargi 5, 67-200 Głogów, Poland
Bibliografia
  • [1] Bydałek, A. W. (1999). Copper alloys melting in the reduction conductions. Solidification of Metals and Alloys. 1(40), 8/40. PL ISSN 0208-9386.
  • [2] Górny, Z., Sobczak, J. (2005). Modern casting materials on the base of non-ferrous metals. Kraków: Zap-Pis. ISBN 83-918918-1-X.
  • [3] Wierzbicka, B. & Czyż, M. (1999). Brass melting, Acta Metalurgica Slovaca. 5(2), 443-447.
  • [4] Romankiewicz, F., Romankiewicz, R., Michalski, M. & Romankiewicz, A. (2006). Study of hard spots in lead brass. Archives of Foundry Engineering. 6(18), 257-260. ISSN 1642-5308.
  • [5] Kozana, J., Rzadkosz, S. & Piękoś, M. (2010). Influence of the selected alloy additions on limiting the phase γ formation in Cu-Zn alloys. Archives of Foundry Engineering. 10(1), 221-225.
  • [6] Bydałek, A. W. (2001). Assessing the refining abilities of slag by modelling a real process of metal. Journal of Thermal Analysis. 65, 591-597. DOI: 10.1023/ A:1012414110569.
  • [7] Bydałek, A. W. (2005). The part of carbon in processes of extraction of slags during fusion of copper. Masinostroenie. 21(2), 166-170.
  • [8] Turkdogan, E. T. (1980). Physicochemical properties of molten salts. United Stats Steel Corporation, Monreville- Pensylwania, Acd. Press. ISBN: 0–930767–03–9.
  • [9] Biernat, S. & Bydałek, A. W. (2010). The estimation of quality refining covers. Archives of Foundry Engineering. 10(spec. 1), 181-188. ISSN 1897-3310.
  • [10] Mysik, R. K., Porucznikow, J. P. & Cuchlew. S. M. (1989). Rozliewanije Cu podokisłowojwarstwoj. Cwet. Metałły, 11, 88-91.
  • [11] Kondracki, M. & Szajnar, J. (2007). Possibilities for leaded brass replacement with multi-component brass. Archives of Foundry. 7(2), 57-64. ISSN 1897-3310.
  • [12] Rzadkosz, S. (2001). Influence of the chemical compositions and casting parametrers for the structure and properties of magnesia-tin brass alloys. Archives of Foundry. 1(1). PAN – Katowice, 42/2. PL ISSN 1642-5308.
  • [13] Kondracki, M., Gawroński, J. & Szajnar, J. (2006). TDA method application for structure evaluation of non-leaded fixture brasses. Archives of Foundry. 6(19), 149-156. ISSN 1642-5308.
  • [14] Bydałek, A.W., Schlafka, P. & Najman, K. (2008). The results of copper alloys refining processes in the reduction conditions. Archives of Foundry. 8(spec. 1), 41-44. ISSN 1897-3310.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-af581c35-87a1-416c-ba04-f7e29ed9199a
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