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The influence of pressure die casting parameters on distribution of reinforcing particles in the AlSi11/10% SiC composite

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The method of pressure die casting of composites with AlSi11 alloy matrix reinforced with 10 vol. % of SiC particles and the analysis of the distribution of particles within the matrix is presented. The composite castings were produced at various values of the piston velocity in the second stage of injection, at diverse intensification pressure values, and various injection gate width values. The distribution of particles over the entire cross-section of the tensile specimen is shown. The index of distribution was determined on the basis of particle count in elementary measuring fields. The regression equation describing the change of the considered index was found as a function of the pressure die casting parameters. The conclusion presents an analysis of the obtained results and their interpretation.
Rocznik
Strony
64--67
Opis fizyczny
Bibliogr. 16 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
Bibliografia
  • [1] Dańko, J. (2000). Machines and devices for pressure die casting. Cracow: Ed. AGH.
  • [2] Białobrzeski, A. (1992). Pressure casting. Machines, devices and technology. Warsaw: PWN.
  • [3] Konopka, Z. (2011). Metal cast composites. Czestochowa University of Technology Publ.
  • [4] Konopka, Z. (2000). Composite chips production and properties for vibratory and surface finishing. Materials Science. 5, 243-24.
  • [5] Konopka, Z., Łągiewka, M. & Zyska, A. (2005). Solidification of composite suspension during flowing in a mould. Composites. 5(4), 100-103.
  • [6] Biełopuchov, A.K. et al. (1971). Pressure die casting. Problems of pressing. (Lit`je pod davlenijem. Problemy podpressovki.) Moscow: Masinostrojenie.
  • [7] Street, A. (1997). The Diecasting Book. Portcullis Press Ltd.
  • [8] Piłkowski, Z. (1986). Pressure die casting. In Foundry Engineer’s Handbook. Warsaw: WNT.
  • [9] Barton, H. (1944). The injection of metal into die casting. Machinery L. 64(1642, 1650), 65(1664).
  • [10] Frommer, L. (1926). Der Spritzguss. Werkstattstechnik. H4.
  • [11] Konopka, Z. (1995). Pressure Die Cast Fibre Reinforced Al-Si Alloy Matrix Composites. In Euromat 667-670, Padova.
  • [12] Śleziona, J. (1995). The influence of ceramic particles on solidification of Al-Si and Al2O3 composites. Archives of Materials Science. 2, 163-178.
  • [13] Konopka, Z. (2008). Gravity and pressure die casting of Al alloy matrix composites with SiC and graphite particles. Czestochowa University of Technology Publ.
  • [14] Ryś, J. (1995). Stereology of materials. Kraków.
  • [15] Rożniatowski, K. (2008). Methods of the arrangement inhomogeneity characterization of the structural elements in multiphase materials. Warsaw: Publishing House of Warsaw University of Technology.
  • [16] Qugley, B.F., Abbaschian, G.J. et al. (1982). Metall. Transaction, 13A, January, 93.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1a790552-f2df-4cfd-ac85-1bd9c27a2713
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