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The Influence of Pressure Die Casting Parameters on the Castability of AlSi11-SiCp Composites

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The paper presents the method of preparing a composite slurry composed of AlSi11 alloy matrix and 10 vol.% of SiC particles, as well as the method of its high-pressure die casting and the measurement results concerning the castability of the obtained composite. Composite castings were produced at various values of the piston velocity in the second stage of injection, diverse intensification pressure values, and various injection gate width values. There were found the regression equations describing the change of castability of the examined composite as a function of pressure die casting process parameters. The conclusion gives the analysis and the interpretation of the obtained results.
Rocznik
Strony
29--34
Opis fizyczny
Bibliogr. 17 poz., rys., tab., wykr.
Twórcy
autor
  • Department of Foundry, Częstochowa University of Technology, Armii Krajowej 19, 42-200 Częstochowa, Poland
autor
  • Department of Foundry, Częstochowa University of Technology, Armii Krajowej 19, 42-200 Częstochowa, Poland
  • Department of Foundry, Częstochowa University of Technology, Armii Krajowej 19, 42-200 Częstochowa, Poland
autor
  • Department of Foundry, Częstochowa University of Technology, Armii Krajowej 19, 42-200 Częstochowa, Poland
Bibliografia
  • [1] Konopka, Z., Pasieka, A., Łągiewka, M., Nadolski, M. & Zyska, A. (2014). Correlations between arrangement of reinforcing particles and mechanical properties in pressure die cast AlSi11-SiC composites. Archives of Foundry Engineering. 14(2), 31-36.
  • [2] Konopka, Z. & Pasieka, A. (2014). The influence of pressure die casting parameters on the mechanical properties of AlSi11/10% SiC composite. Archives of Foundry Engineering. 14(1), 59-62.
  • [3] Konopka, Z. & Pasieka, A. (2014). Tribological properties of AlSi11-SiCp composite castings produced by pressure die casting method. Archives of Foundry Engineering. 14(3), 37-43.
  • [4] Konopka, Z. (2011). Metal cast composites. Częstochowa: Wydawnictwo Politechniki Częstochowskiej.
  • [5] Metcalfe, A. (1975). Interfaces in metal matrix copmosites, Academic Press, vol.I, Composite Materials. NY, London, (wyd. rosyjskie, Mir, Moskwa, 1978).
  • [6] Matthews, F. L., Rawlings, R. D. (1994). Composite Materials: Engineering and Science. Chapman and Hall.
  • [7] Hull D. (1981). An introduction to composite materials. Cambridge University Press. Cambridge.
  • [8] Gutowski, W.S. (1987). The relationship between the strength of an adhesive bond and the thermodynamic properties of its components. Int. Journal of Adhesion and Adhesives. 7(4).
  • [9] Mortensen, A. (1991). Interfacial phenomena in the solidification processing metal matrix composites. Materials Science Engineering. A(135), 1-16.
  • [10] Konopka, Z., Zyska, A. & Cisowska, M. (2004). Investigations on pressure die cavity filling with composite suspension, Archives of Foundry. 14.
  • [11] Surappa, M.K, Rohatgi, P.K. (1981). Fluidity of Al-Si-Al2O3 Composites, Metallurgical Transactions B. 12(B).
  • [12] Campbell, J. (1994). Review of Fluidity Concepts in Casting. Cast Metals. 7.
  • [13] Fortier A. (1971). Mechanika suspensji. Mir 1971, Moskwa.
  • [14] Konopka, Z., Cisowska, M. & Zyska, A. (2004). A graphite particle flow in composite material during the mould cavity filling, ATMiA. 24(spec. 1), 131-136.
  • [15] Konopka, Z. (2007). Gravity and pressure casting of Al alloy matrix composites with SiC and graphite particles. In Sobczak J. (Ed.) Innovations in Foundry. Part 1. (199-208). Cracow: Foundry Research Institute.
  • [16] Białobrzeski, A. (1992). Pressure casting. Warsaw: WNT.
  • [17] Street, A. (1997). The Diecasting Book, Portcullis Press Ltd.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-cd672c88-7103-4ab3-abc9-341fccbf3dc2
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