Strength of Materials

, Volume 12, Issue 4, pp 520–523 | Cite as

Method for fatigue testing gas-turbine engine compressor blades in a corrosive atmosphere

  • A. V. Prokopenko
  • V. N. Torgov
Production Section


Atmosphere Fatigue Fatigue Testing Compressor Blade Engine Compressor 
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Literature cited

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    V. I. Pokhmurskii, Corrosion-Fatigue Strength of Steels and Methods for Its Improvement [in Russian], Naukova Dumka, Kiev (1974).Google Scholar
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    A. V. Ryabchenkov, Corrosion-Fatigue Strength of Steels [in Russian], Mashgiz, Moscow (1953).Google Scholar
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    G. V. Karpenko, K. B. Katsov, I. V. Kokotailo, and V. P. Rudenko, Low-Cycle Fatigue of Steel in Operating Atmospheres [in Russian], Naukova Dumka, Kiev (1974).Google Scholar
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    I. I. Vasilenko and R. K. Melekhov, Corrosion Cracking of Steels [in Russian], Naukova Dumka, Kiev (1977).Google Scholar
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    L. J. Ceshini, W. G. Clark, and M. Spewock, “A procedure for fatigue crack growth testing in gaseous environments”, Mat. Res. Standards, MTRSA,12, No. 1, 24–27 (1972).Google Scholar
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    J. S. Enochs and O. F. Devereux, “Fatigue crack growth in 5052-H34 aluminum in vacuum and active gas environments”, Met. Trans., A6, No. 2, 391–397 (1975).Google Scholar
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    S. A. Kurkin, O. I. Steklov, V. N. Sorokin, and S. V. Barybin, “Equipment for studying development of failure in a corrosive atmosphere under low-cycle loading”, Zavod. Lab.,42, No. 10, 1266–1267 (1976).Google Scholar
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    G. V. Karpenko, V. T. Stepurenko, and Yu. I. Babei, “Method of corrosion-fatigue testing of metals”, in: Corrosion-Fatigue of Metals [in Russian], Kamenyar, L'vov (1964), pp. 155–161.Google Scholar

Copyright information

© Plenum Publishing Corporation 1980

Authors and Affiliations

  • A. V. Prokopenko
    • 1
  • V. N. Torgov
    • 1
  1. 1.Institute of Strength ProblemsAcademy of Sciences of the Ukrainian SSRKiev

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