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echanical properties of high-pressure die-casting AZ91 magnesium alloy

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Results of mechanical properties of high-pressure die-casting AZ91 magnesium alloy are presented. Performed examinations allowed to determine influence of plunger velocity in the first and second stage and intensification pressure on the ultimate tensile strength (UTS), yield strength (YS), elongation (A5 and Agt), Brinell hardness (HB) and impact strength (IS) of samples cast on 320 tone cold chamber machine. Obtained results revealed the highest properties at median used parameters and also the most powerful effect of plunger velocity in the first stage. The maximum values of mechanical properties obtained from the performed experiments were: UTS 250 MPa, YS 160 MPa, A5 7%, 70 HB, IS 7 J.
Rocznik
Strony
15--18
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
autor
autor
  • Częstochowa University of Technology, Institute of Materials Engineering, Division of Foundry, Al. Armii Krajowej 19, 42-200 Częstochowa, Poland, kacha@mim.pcz.czest.pl
Bibliografia
  • [1] B.L. Mordike, T. Ebert T.: Magnesium properties-applications-potential, Materials Science and Engineering A, 2001, Vol. 302, 37÷45.
  • [2] "Magnesium Alloys and Their Applications", WILEY-VCH, Edited by K.U. Kainer, 1998.
  • [3] "Magnesium Alloys and Their Applications", WILEY-VCH, Edited by K.U. Kainer, 2000.
  • [4] "Magnesium Alloys and Their Applications", WILEY-VCH, Edited by K.U. Kainer, 2003.
  • [5] K.N. Braszczyńska-Malik, Studium kształtowania mikrostruktury stopów magnez-aluminium, Ed. WIPMiFS Czest. Univ. of Technol., Częstochowa, 2005 (in Polish).
  • [6] D.H. Wu, M.S. Chang, Use of Taguchi method to develop a robust design for the magnesium alloy die casting process, Mater. Sc. Eng., A379 (2004) 366-371.
  • [7] N.A. El-Mahallawy, M.A Taha, E. Pokora, F. Klein, On the influence of the process variables on the thermal conditions and properties of high pressure die-cast magnesium alloys, J. of Mater. Pro. Tech., 73 (1998) 125-138.
  • [8] E.M. Gutman, Y. Unigovski, M. Levkovich, Z. Koren, E. Aghion, M. Dangur, Influence of technological parameters of permanent mold casting and die casting on creep and strength of Mg alloy AZ91D, Mater. Sc. And Eng., A234-236 (1997) 880-883.
  • [9] A.K. Dahle, S. Sannes, D.H. John, H. Westengen, Formation of defect bands in high pressure die cast magnesium alloys, J. Light Met., 1 (2001) 99-103.
  • [10] M. Vogel, O. Kraft, G. Dehm, E. Arzt, Quasi-crystalline grain-boundary phase in the magnesium die-cast alloy ZA85, Scrip. Mater., 45 (2001) 517-524.
  • [11] Y.B. Unigovski, E.M. Butman, Surface morphology of a die-cast Mg alloy, App. Sur. Sc., 153 (1999) 47-52.
  • [12] K.S. Tong, B.H. Hu, X.P. Niu, I. Pinwill, Cavity pressure measurements and process monitoring for magnesium die casting of a thin-wall hand-phone component to improve quality, J. of Mater. Proc. Tech., 127 (2002) 238-241.
  • [13] A. Balasundaram, A.M. Gokhale, Quantitative characterization of spatial arrangement of shrinkage and gas (air) pores in cast magnesium alloys, Mater. Char., 46 (2001) 419-426.
  • [14] Hydro Magnesium: Magnesium die casting, HM Technical Brochure, Hydro Media, 08, 2002
  • [15] K.N. Braszczyńska-Malik, W. Walczak, J. Braszczyński, The new foundry line for the magnesium alloys high-pressure die-casting, Archives of Foundry Engineering, 8, 1 (2008) 27-30.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0046-0002
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