Strength of Materials

, Volume 13, Issue 7, pp 847–852 | Cite as

Effect of residual stresses on the fatigue resistance of alloy VT9 at different temperatures

  • B. F. Balashov
  • A. N. Petukhov
  • A. N. Arkhipov
Scientific-Technical Section


Fatigue Residual Stress Fatigue Resistance 
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Literature cited

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    B. F. Balashov, A. N. Petukhov, and B. V. Volodenko, “Structural strength of titanium alloys and parts made of them,” Trudy TsIAM, No. 545 (1972).Google Scholar
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    A. N. Arkhipov and Yu. M. Ternis, “Study of residual stresses in complex-shaped structures by the finite-element method,” Probl. Prochn., No. 7, 81–84 (1980).Google Scholar
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    V. Weibull, Fatigue Tests and Analysis of Results [in Russian], Mashinostroenie, Moscow (1964).Google Scholar
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    S. V. Serensen and M. N. Stepanov, Planning and Statistical Analysis of Strength Test Results [in Sussian], Mashinostroenie, Moscow (1969).Google Scholar
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    Yu. P. Adler, E. V. Markova, and Yu. V. Granovskii, Planning an Experiment to Look for Optimum Conditions [in Russian], Nauka, Moscow (1976).Google Scholar
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    A. M. Sulina and M. I. Evstigneev, Surface Finish and Fatigue Resistance of Parts Made of Steels and Heat-Resistant and Titanium Alloys [in Russian], Mashinostroenie, Moscow (1974).Google Scholar
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    B. A. Kravchenko, “Formation and control of residual stresses during mechanical treatment of heatresistant and titanium alloys,” Author's Abstract of Candidate's Dissertation, Doctor of Technical Sciences, Gorki (1966).Google Scholar

Copyright information

© Plenum Publishing Corporation 1982

Authors and Affiliations

  • B. F. Balashov
    • 1
  • A. N. Petukhov
    • 1
  • A. N. Arkhipov
    • 1
  1. 1.P. I. Baranov Central Scientific-Research Institute of Aircraft Engine BuildingMoscow

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