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Structure and technological properties of AlSi12 – (SiC_p + Cg_p) composites

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the article the structure and technological properties of aluminium cast composites with ceramic particles have been presented. Evaluation of casting properties of selected composite materials was made based on spiral tests. The differences occurring in solidification curves for materials reinforcing by silicon carbide, amorphous glass carbon particles and mixture of silicon carbide and glassy carbon particles were compared. On the basis of macro - and microstructural investigations of composite ingots after solidification at the same conditions the distribution of ceramic particles were estimated. The hardness on the cross section of formed composite ingots were presented in the graphic form.
Rocznik
Strony
43--46
Opis fizyczny
Bibliogr. 13 poz., rys., wykr.
Twórcy
autor
autor
Bibliografia
  • [1] Degischer H. P., Prader P., San Marchi Ch., Assessment of Metal Matrix Composites for Innovations - intermediate report of a European Thematic Network. Composites Part A. 32 (2001), p. 1161-1166.
  • [2] Taha M.A. Practicalization of cast metal matrix composites (MMCCs), Materials and Design 22 (2001) p. 431-441.
  • [3] Dolata-Grosz A., Dyzia M., Śleziona J., Wieczorek J.: Composites applaied for pistons, Archies of Foundry Engineering, Vol. 7/1 (1/2), 2007, p. 37-40.
  • [4] Kaczmar J.W., Pietrzak K., Włosinński W., The production and application of metal matrix composite materials, Journal of Materials Processing Technology 106 (2000), p. 58-67.
  • [5] Hashim J., Looney L., Hashmi M.S.J, Metal matrix composites: production by the stir casting method, Journal of Materials Processing Technology 92-93 (1999), p.1-7.
  • [6] E. Fraś: Particles intereaction with solidification front, Archives of Foundry , Vol. 6, No 18 (1/2), 2006, p. 339-344.
  • [7] M. Dyzia, A. Dolata-Grosz, J. Śleziona, J. Wieczorek: Structure of AK12+2%Mg composites reinforced by ceramics particles received in different heat transfer conditions, Archives of Foundry, Vol. 1, No 1 (2/2), 2001.
  • [8] M. Łągiewka, Z. Konopka, A. Zyska: Krzepnięcie kompozytów hybrydowych AlMg10/SiC+Cgr, Archives of Foundry, Vol. 6, No 18 (1/2), 2006, p. 325-330.
  • [9] Śleziona J., Dyzia M., Wieczorek J. Casting properties of AlSi-SiC composite suspensions, Archives of Foundry, Vol. 6, No 22, 2006, p. 540-545.
  • [10] Dolata-Grosz A., Wieczorek J., Śleziona J., Dyzia M.: Possibilities of the use of vacuous technologies for composite mixture quality rising, Archives of Foundry, Year 2006, Vol. 6, No 18 (1/2), p. 285-290.
  • [11] Śleziona J., Wieczorek J., Dolata-Grosz A.: The influence of the degassing process on the structure of aluminium composites containing glass carbon and silicon carbide particles, Material Science No 3 (151), 2006, p. 665-667.
  • [12] A. Dolata-Grosz, M. Dyzia, J. Śleziona, J. Myalski: Analiza procesu krzepnięcia kompozytu heterofazowego, Archives of Foundry, Vol. 6, No 22, 2006, p. 145-151.
  • [13] A. Dolata-Grosz, M. Dyzia, J. Śleziona: Solidification and structure of heterophase composite, Journal of Achievements in Materials and Manufacturing Engineering, Vol. 20, Issues 1-2, 2007, p.103-106.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0028-0008
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