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Hot cracking of ZRE1 alloy in constant joint stiffness condition

Wybrane pełne teksty z tego czasopisma
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
ZRE1 alloy with addition of Zn, Zr and rare earth elements is gravity casted to sand casting moulds, and is used mainly in aerospace and automotive industries. Magnesium alloy castings often have defects, such as misruns and micro-shrinkage. This defects are repaired with welding and overlay welding techniques. Main practical difficulty during welding of magnesium alloys is their susceptibility to hot cracking in the crystallization process. The paper intends to evaluate susceptibility of magnesium alloys to hot cracking and examine influence of heat treatment on cracking of the ZRE1 magnesium alloy with addition of zinc and rare earth elements during welding in conditions of constant stiffness. The results of tests of susceptibility to hot cracking of repair welding joints of ZRE1 alloy castings have been described. The range of research has included the Fisco test and metallographic tests. It has been observed that heat treatment decreases susceptibility of the ZRE1 alloy to hot cracking.
Rocznik
Strony
151--156
Opis fizyczny
Bibliogr. 16 poz., rys., tab., wykr.
Twórcy
autor
  • Department of Materials Science, Silesian University of Technology University, ul. Krasińskiego 8, 40-019 Katowice, Poland
autor
  • Department of Materials Science, Silesian University of Technology University, ul. Krasińskiego 8, 40-019 Katowice, Poland
Bibliografia
  • [1] X. Cao, M. Jahazzi, J.P. Immarigeon, W. Wallace : A rewiev of laser welding techniques for magnesium alloys, Journal of Materials Processing Technology, 171(2006)188-204.
  • [2] L.A. Dobrzański, T. Tański, L. Čižek : Microstructure and mechanical properties of magnesium cast alloys Mg-Al, Archives of Foundry Engineering, 2006, vol. 6, No 22.
  • [3] Zhen-hua Chen, Ji-hua Chen : A review : Hot topics on magnesium technology in China, Front. Mater. Sci. China 2008, 2(1).
  • [4] S. Roskosz, J. Adamiec, M. Błotnicki : Influence of delivery state quality on microstructure and mechanical properties of as cast AZ91 Mg alloy, Archives of Foundry Engineering, , No. 1, 2007.
  • [5] I.P. Moreno, T.K. Nandy, J.W. Jones, Microstructure characterization of a die-cast magnesium-rare earth alloy, Scripta Materialna, 45 (2001) 1423-1429.
  • [6] J. Adamiec, S. Roskosz ,J. Cwajna , J. Paśko : Repeatable and reproducible methodology of the AZ91 alloy structure evaluation, Archives of Foundry Engineering, No. 2, 2007.
  • [7] K.N. Błaszczyk-Malik, W. Walczak, J. Braszczyński: The new foundry line for magnesium alloys high-pressure die-casting Archives of Foundry Engineering, 2008, Vol. 8, iss. 1, p. 27-30.
  • [8] T. Rzychoń, A. Kiełbus, J. Cwajna, J. Mizera: Microstructural stability and creep properties of die casting Mg–4Al–4RE magnesium alloy, Materials Characterization 60 (2009), p. 1107–1113.
  • [9] M. Avedesian, H. Baker: Magnesium ang Magnesium Alloys, ASM Speciality Handbook, 1999.
  • [10] E. Tasak, A. Ziewiec : Weldability of construction materials. Vol.1 Weldability of steel, 2009, Wydawnictwo JAK, Andrzej Choczewski (in polish).
  • [11] Ramirez A.J., Lippold J.C: New insight into the mechanism of ductility-dip cracking In Ni-base weld metals, Hot cracking phenomena in welds, Springer, Berlin 2005.
  • [12] Butnicki S.: Weldability and brittleness of steel, WNT, 1979, (in polish).
  • [13] Lancaster J.F.: The metallurgy of welding, WNTR, Warszawa 1966.
  • [14] Pilarczyk J.: Engineering Handbook, Welding, vol.1, WNT, Warszawa 2003, (in polish).
  • [15] Adamiec J.: Assessment of hot crack resistance of 2205 duplex steel, Inżynieria Materiałowa, No. 3, 2009, (in polish).
  • [16] Yu Kun, Li Wen-xian, Wang Ri-chu, Mechanical properties and microstructure of as-cast and extruded Mg-(Ce, Nd)-Zn-Zr alloys, Journal Central South University Technology Vol. 12 No. 5 Oct. 2005.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fb7167eb-4749-41c2-b9e8-48b121455e96
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