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The influence of austenitization temperature on the anizothermal eutectoid transformation of spheroidal cast iron

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
In the work one can find the research of anizothermal eutectoid transformation of unalloyed austenitized spheroidal cast iron in the temperature 875 or 1000°C. By means of the matallographic method one prepered TTT diagrams. On the basis of the quantitative matallographic analysis the influence of austenitization temperature on the mechanism and kinetics of the eutectoid transformation was interpreted.
Rocznik
Strony
101--104
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
  • University of Technology and Life Sciences, Faculty of Mechanical Engineering, Kaliskiego 7, 85-796 Bydgoszcz, Poland
  • University of Technology and Life Sciences, Faculty of Mechanical Engineering, Kaliskiego 7, 85-796 Bydgoszcz, Poland
Bibliografia
  • [1] Cz. Podrzucki: Żeliwo. Struktura, właściwości, zastosowanie. t. I i II. Wydawnictwo ZG STOP, Kraków 1991 (in Polish).
  • [2] E. Fraś: Modeling of phase transformation in ductile cast iron, Archives of Foundry, Vol.1, no. 1 (1/2), (2001)103 - 111.
  • [3] J. Lacaze: Pearlite growth in cast irons: a review of literature data. Int. J. Cast Metal Res., No.11, (1999) 431 - 436.
  • [4] J. Lacaze at all : The role of manganese and cooper in the eutectoid transformation of spheroidal graphite cast iron. Metalurgical and materials Transactions A, vol. 28 A, (1997) 2015 - 2025.
  • [5] F. Hellar at all: Initial stage of isothermal decomposition of astenite to ferrite and graphite in spheroidal cast iron, Materials Sciene and Technology, vol. 15, No. 7, (1999) 773 -777.
  • [6] V. Gerval and all.: Modelling continuous cooling transformation diagrams of spheroidal graphite cast irons. Int. J. Cast Metals Res., No. 11, (1999) 477 - 482.
  • [7] D. Venugoplan: Kineticmodel of the γ→α + Gr eutectoid transformation in spheroidal graphite cast irons, Met. Trans. A , vol. 21 A, No.4, (1999) 913 - 918.
  • [8] P. Misic: Modelling of microstructure and property distribution within industrial nodular graphite iron casting, Int. J. Cast Metal Res. Vol. 16, no. 5, (2003) 473 - 480.
  • [9] J. Sikora, R.Boeri: Solid state transformation in ductile iron –influence of prior austenite matrix microstructure, Int. J. Cast Res. Vol. 11, (1999) 395 - 400.
  • [10] J. Lacaze and all.: Experimental study of the eutectoid transformation in spheroidal graphite cast iron, Scand. J. Metallurgy, vol. 23, (1994) 151 - 163.
  • [11] T. Nakata, T. Kasugai: SH - CCT diagrams for welding and continuous cooling transformation behaviour for ductile cast iron, Int. J. Cast Metal Res., vol.10, (1997) 99 - 103.
  • [12] A. Ikhlef at all.: Evolutions structurales de fonts D.S. au cours de defferents types de traiements thermiques , Hommes and Fonderie, No. 1, (1982) 9 - 22.
  • [13] T. Szykowny: Ductile cast iron structure forming during continuous cooling, Archives of Foundry, Vol. 3, no. 8, (2003) 111 - 119 (in Polish).
  • [14] T. Szykowny: Influence of stereological properties of graphite on the anizothermal eutectoidal transformation in spheroidal cast iron, Archives of Foundry, Vol. 6, no.19 (2006) 331 - 341 (in Polish).
  • [15] A. Barbacki: Metody i techniki strukturalnych badań metali, wydawnictwo Politechniki Poznańskiej1982 (in Polish).
  • [16] T. Szykowny et all.: The role of secondary cementite of cracing of the spheroidal cast iron, Archives of Foundry, Vol. 6, no.18, 2/2, (2006) 77 - 82 (in Polish).
  • [17] N. G.Giršowič: Sprawočnik po čugunnomu litju, Masinostrojenee, Leningrad (1978), (in Russian).
  • [18] N. Darwish, R. Elliott: Austempering of low manganese ductile irons, Materials Science and Technology, Vol. 9, no 7 (1993) 572 - 585.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-e3b9abb1-4645-498b-8233-f971c49b894d
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