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Technological aspects of AlSi-CrxCy composite casting manufacturing with use of permanent moulds

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In this work authors presented the restrictions and possibilities of permanent mould casting technique in manufacturing dispersive composite elements reinforced with metallic particles. The characteristic feature of such particles is their physical and chemical reactivity, which deteriorates the rheological properties of the liquid dispersion. Selection of technological parameters for manufacturing and casting is aimed on proper filling of the mould with liquid dispersion. For comparison, the results of similar experiments with use of investment casting were shown. Basic constructional requirements connected with brake discs manufacturing were presented, together with the concept of moulding materials selection, influencing the flow of liquid dispersion. As the results of conducted studies technological parameters of brake disc manufacturing with use of AlSi-CrxCy composites were determined.
Rocznik
Strony
177--182
Opis fizyczny
Bibliogr. 24 poz., fot., rys.
Twórcy
autor
  • Silesian University of Technology, Foundry Department, Towarowa 7, 44-100 Gliwice, PL
autor
  • Silesian University of Technology, Foundry Department, Towarowa 7, 44-100 Gliwice, PL
autor
  • Silesian University of Technology, Foundry Department, Towarowa 7, 44-100 Gliwice, PL
Bibliografia
  • [1] Śleziona J.: Scientific Works of Silesian University of Technology, vol. 47, Gliwice, 1994 (in Polish).
  • [2] Konopka Z, Cisowska M.: Attempt to evaluate the liquid AlMg10 alloy flow with use of standard castability test, Arch. Found., vol. 2, Gliwice, 2002, 135-140 (in Polish).
  • [3] Konopka Z.: Gravitation and pressure casting of Al-SiC composites containing graphite particles, Innovation in Foundry, vol. 1, Kraków, 2007, 199-207 (in Polish).
  • [4] Sobczak J.: Metal Composites, Kraków-Warszawa, 2001.
  • [5] Mutwil J.: Fundamental types of metal flow in mould chanels on aluminum alloys example. Arch. Technol. Mach. Autom., Poznań, 1998,vol 18, 221-231 (in Polish).
  • [6] Mutwil J., Bydałek A., Niedźwiecki D.: Temporary state perspectives of castability tests development, Solid. Met. All. Gliwice, 1998, vol. 37, 53-58 (in Polish).
  • [7] Mutwil J., Janowski R.: Features of AlSi alloys flow through channels of metal moulds, Arch. Found., Gliwice, vol. 1, 2001, 257-262 (in Polish).
  • [8] Konopka Z., Cisowska.: AlMg10 – SiC composites castability, Arch. Found., Gliwice, vol. 3, 2003, 293-298 (in Polish).
  • [9] Bokota A., Parkitny R.: Elastic-plastic states in solidifying casting, Archives Mechnics, (1991), 43 (2-3), 249-269.
  • [10] Parkitny R., Bokota A., Sowa L.: Numerical modeling of casting solidification considering the mould cavity filling Scientific Works of Silesian University of Technology, Gliwice, 1998, vol. 6, 287-292 (in Polish).
  • [11] Bokota A., Sowa L.: FEM application for modeling of castability test, Arch. Found., vol. 1, Gliwice, 2001, 42-47 (in Polish).
  • [12] Sowa L., Bokota A.: Model of solidifying alloy in vertical castability test, Arch. Found., vol. 3, Gliwice, 2003, 193-198 (in Polish).
  • [13] Dhatt G., Gao D. M.: Finite element simulation of metal flow In moulds, Int. J. for Num. Meth. in Eng., (1990), 30, 821-831.
  • [14] Dobrzański L. A., Kremzer M., Nowak A. J., Nagel A.: Composite materials based on porous ceramic preform infiltrated by aluminium alloy, J. of AMME, 20, (2007) Gliwice, 95-98.
  • [15] Dobrzański L. A., Kremzer M., Nagel A., Huchler B.: Composite materials based on the porous Al2O3 ceramics infiltrated with the EN AC-AlSi12 alloy, Composites, vol. 4a (2005) 35-41.
  • [16] Baron C., Bartocha D., Gawroński J.: Thermal simulation of process formation composite leyer on model casting, J.of AMME, 18, (2006) Gliwice, 51-54.
  • [17] Myalski J., Wieczorek J.: Tribological properties of heterophase composites with an aluminium matrix, J.of AMME, 15, (2006) Gliwice, 53-57.
  • [18] J. Sobczak (ed.): Innovation in Foundry, part 2 (in print).
  • [19] Cholewa M., Formanek B.: Technical aspects of composite casting manufacturing with use of investment casting, Composites, vol. 8/3, 2008, 215-220 (in Polish).
  • [20] Pietrowski S.; Eutectic AlSi alloy with additions of Cr, Mo, W and Co. Solid. Met. Al., vol. 38,1998, 103-108 (in Polish).
  • [21] http://www.brembo.com.
  • [22] Cholewa M., Gawroński J.: Patent P. 354 384 (in Polish).
  • [23] Cholewa M., Formanek B.: Patent application P. 364 605 (in Polish).
  • [24] Cholewa M.: Structure evaluation of cast dispersive AlSi-CrxCy composites, AFE SI 3/2008, 171-176.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c427516c-80dc-4584-9d2f-b24f4169aaf5
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