Metal Science and Heat Treatment

, Volume 18, Issue 1, pp 93–94 | Cite as

Effect of strain aging of martensite on relaxation resistance and service life of springs

  • M. M. Ismagilov
  • V. V. Zabil'skii
Technical Information


Strain aging of steel 60S2A in the martensitic condition increases the relaxation resistance and fatigue life of springs.


Fatigue Martensite Fatigue Life Service Life Strain Aging 
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Literature cited

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    D. A. Kal'ner, “New method of manufacturing heat-treated springs,” in: Increasing the Structural Strength of Steels and Alloys [in Russian], No. 1., MDNTP, Moscow (1970) p. 82.Google Scholar
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    A. L. Selyavo, “Method of testing relaxation of cylindrical compression springs,” Zavod. Lab.,26, No. 2, 203 (1960).Google Scholar
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    V. I. Sarrak, S. O. Suvorova, and R. I. Éntin “Interaction of dislocations with carbon atoms in martensite,” in: Problems of Metal Science and Physics of Metals [in Russian], No. 10, Metallurgiya, Moscow (1968), p. 151.Google Scholar
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    M. M. Ismagilov and V. V. Zabil'skii “Effect of compression method on relaxation resistance of coil springs,” in: Dynamics, Strength, and Fatigue Life of Machine Parts [in Russian], No. 3, Udmurtiya, Izhevsk (1974), p. 117.Google Scholar
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    V. A. Karpunin et al., Eccentric Machine for Testing Fatigue Life of Compression Springs [in Russian], No. 2-67-172/23, GOSINTI, Moscow (1967), p. 3.Google Scholar
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    R. M. Chatynyan, “Method of statistical treatment of results of fatigue tests,” Izv. Vyssh. Uchebn. Zaved. Mashinostroenie, No. 6, 95 (1963).Google Scholar

Copyright information

© Plenum Publishing Corporation 1976

Authors and Affiliations

  • M. M. Ismagilov
  • V. V. Zabil'skii

There are no affiliations available

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