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Influence of cooling rate on y' morphology in cast Ni - base superalloy

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Języki publikacji
EN
Abstrakty
EN
The Ni - base superalloys, which are combined an unique physical and mechanical properties, are used in aircraft industry for production of aero engine most stressed parts, as are turbine blades. From this reason a dendrite arm spacing, carbides size and distribution, morphology, number and value of [...] - phase are very important structural characteristics for blade life time prediction as well as aero engine its self. In this article are used methods of quantitative metallography (software LUCIA for carbides evaluation, measuring of secondary dendrite arm spacing and coherent testing grid for [...] - phase evaluation) for evaluation of structural characteristics mentioned above on experimental material - Ni base superalloy ŽS6K. The high temperature effect represented here by heat treatment at 800oC followed with holding time about 10 hours, and cooling rate, here represented by three various cooling mediums as water, air, and oil, on structural characteristics and application of quantitative methods evaluation are presented in this paper.
Rocznik
Strony
101--104
Opis fizyczny
Bibliogr. 11 poz., rys., tab., wykr.
Twórcy
autor
  • Faculty of Mechanical Engineering, Department of Materials Engineering, University of Žilina, Univerzitná 1, 010 26 Žilina, Slovakia, juraj.belan@fstroj.uniza.sk
Bibliografia
  • [1] Copley, S. M., Kear, B. H. Structural characteristics of superalloys, part I, The Minerals, Metals & Materials Society - The American Institute of Mining, Metallurgical, and Petroleum Engineers 239 1967: pp. 977-983.
  • [2] Copley, S. M., Kear, B. H. Structural characteristics of superalloys, part II, The Minerals, Metals & Materials Society - The American Institute of Mining, Metallurgical, and Petroleum Engineers 239 1967: pp. 984-989.
  • [3] Donachie, M. J. Superalloy Source Book, ASM, 1984, pp. 102-111.
  • [4] Leverant, G. R., Kear, B. H. Mechanical properties of advanced superalloys, Metallurgical and Materials Transactions 1 1970: pp. 491-498.
  • [5] Jackson, J. J. Evaluation of superalloys structural characteristics, Metallurgical and Materials Transactions 8A(10) 1977: pp. 1615-1620.
  • [6] Gell, M., Duhl, D. N. Progressive technologies in superalloys. Advanced high temperature alloys ASM, 1985: pp. 41-49.
  • [7] Klacková, M.: Hidden history of production In: Productivity and Innovation Slovak Productivity Center, 03 2006: pp. 20-21 (in Slovak).
  • [8] Podrábsky, T. - Hakl, J. - Nĕmec, K. - Belan, J. - Vlasak, T. - Man. O.: Turbine blade structure degradation made of ŽS6K alloy during loading, In: Archiwum odlewnictwa, rocz. 4, 2004, Nr 11, Tom II, p. 117-122. ISSN 1642-5308. (in Czech).
  • [9] Skočovský, P., Matejka, M.: Cast iron microstructure - metallography handbook Fompex, Trenčín, ES VŠDS, 1994, (in Slovak).
  • [10] Skočovský, P., Vaško, A. The quantitative evaluation of cast iron structure 1st Edition, EDIS, Žilina, 2007, 73 s. (in Slovak).
  • [11] Belan, J., Skočovský, P. The quantitative metallography of ni - base superalloys XX MIEDZYNARODOWE SYMPOZJUM, Metody oceny struktury oraz wlasnosci materialow I wyrobow Ustron - Jaszowiec, 2005: pp. 83-88.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BPZ1-0063-0023
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