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Eutectic cell and nodule count as the quality factors of cast iron

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Języki publikacji
EN
Abstrakty
EN
In this work the predictions based on a theoretical analysis aimed at elucidating of eutectic cell count or nodule counts N were experimentally verified. The experimental work was focused on processing flake graphite and ductile iron under various inoculation conditions in order to achieve various physicochemical states of the experimental melts. In addition, plates of various wall thicknesses, s were cast and the resultant eutectic cell or nodule counts were established. Moreover, thermal analysis was used to find out the degree of maximum undercooling for the graphite eutectic, [...]. A relationship was found between the eutectic cell or nodule count and the maximum undercooling [...]. In addition it was also found that N can be related to the wall thickness of plate shaped castings. Finally, the present work provides a rational for the effect of technological factors such as the melt chemistry, inoculation practice, and holding temperature and time on the resultant cell count or nodule count of cast iron. In particular, good agreement was found between the predictions of the theoretical analysis and the experimental data.
Rocznik
Strony
53--58
Opis fizyczny
Bibliogr. 20 poz., rys., tab.
Twórcy
autor
autor
  • AGH University of Science and Technology, Reymonta 23 Str., 30-059 Kraków, Poland, edfras@agh.edu.pl
Bibliografia
  • [1] E. Fraś, C. Podrzucki, Inoculated Cast Iron, AGH, Cracow, 1978.
  • [2] E. Fraś, H.Lopez, Acta Metallurgica and Materialia , 1993, Vol. 41, no.12, p.3575.
  • [3] E. Fraś, H.Lopez, AFS Transactions, 1994, p. 597.
  • [4] H. Morrogh, Journal of The Iron and Steel Institute, January, 1968, p.1.
  • [5] Liu Jincheng, R. Elliot, International Journal of Cast Metals Researches, 1999, Vol.11, p. 407.
  • [6] G.Lesoult, M. Castro, J. Lacaze, Acta Materialia, 1999, Vol. 47, p. 3779.
  • [7] M.N. Achmadabadi, E. Niyama, T. Ohide, AFS Transactions, 1994, p. 269.
  • [8] A. Javaid, J.Thompson, K.G. Davis, AFS Transactions, 2002, p. 889.
  • [9] A. Javaid, J. Thompson, M. Sahoo, K.G. Davis, AFS Transactions 1999, p. 441.
  • [10] D. Venugopalan, Metallurgical and Materials Transactions, 1990, Vol. 21 A, p. 913.
  • [11] J. Rys, Stereology of materials, Fotobit, Cracow, 1995.
  • [12] J. Osher, Lorz.: Quantitative Gefuengenanalysie, DVG, Leipzig-Stuttgard, 1994.
  • [13] L. Wojnar, Acta Stereologica, 1986, Vol. 5/2, p. 319.
  • [14] K. Wiencek, J. Rys , Materialas Engineering, 1998, No.3, p.396.
  • [15] E. Fraś, M. Gorny, H. Lopez International Journal of Cast Metals Researches, 2005, Vol.18, p.156.
  • [16] E. Fraś, M.Gorny , J.Tartera, International Journal of Cast Research, 2003, Vol.16, p. 99.
  • [17] E. Fraś, M. Gorny, H. Lopez, Metallurgy and Foundry Ingineering, 2005, Vol.31, no.2, p.137.
  • [18] E. Fraś, M. Gorny, H. Lopez, Metallurgical and Materials Transactions A, 2005, Vol.36A, p.3075.
  • [19] J. Agren, Scripta Matallurgica, 1986, Vol. 20, p.1507.
  • [20] H.D. Merchant, L.J. Torriello, J.F.Wallace. Transaction of AFS, 1963, p.882.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ3-0035-0010
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