Skip to main content
Log in

Determination of the characteristics of the resistance to crack propagation (crack resistance) of metals under cyclic loading (methodological instructions)

  • Science for Production
  • Published:
Soviet materials science : a transl. of Fiziko-khimicheskaya mekhanika materialov / Academy of Sciences of the Ukrainian SSR Aims and scope

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Literature cited

  1. S. Ya. Yarema, V. V. Panasyuk, and V. V. Popovich, Method of Testing the Fatigue Crack Resistance of Metals [in Russian], Preprint No. 9, FMI AN UkrSSR, Lvov (1978).

    Google Scholar 

  2. V. V. Panasyuk, Limit Equilibrium of Brittle Bodies with Cracks [in Russian], Naukova Dumka, Kiev (1968).

    Google Scholar 

  3. N. A. Makhutov, Resistance of Structural Elements to Brittle Fracture [in Russian], Mashinostroenie, Moscow (1973).

    Google Scholar 

  4. V. Z. Parton and E. V. Morozov, Mechanics of Elastoplastic Fracture [in Russian], Nauka, Moscow (1974).

    Google Scholar 

  5. G. P. Cherepanov, Mechanics of Brittle Fracture [in Russian], Nauka, Moscow (1974).

    Google Scholar 

  6. V. S. Ivanova and V. F. Terent'ev, The Nature of Fatigue [in Russian], Metallurgiya, Moscow (1975).

    Google Scholar 

  7. S. Ya. Yarema and L. V. Ratych, Inventor's Certificate No. 415546, “Specimen for investigating crack propagation in sheet material,” Byull. Izobr., No. 6 (1974).

  8. S. Ya. Yarema and S. I. Mikitishin, “Analytical description of the diagram of fatigue failure of materials,/rd Fiz.-Khim. Mekh. Mater.,11, No. 6, 47–54 (1975).

    Google Scholar 

  9. S. Ya. Yarema, “State of stress of disks with cracks recommended as specimens for investigating the resistance of materials of crack propagation,” Fiz.-Khim. Mekh. Mater.,12, No. 4, 25–39 (1976).

    Google Scholar 

  10. S. I. Kishkina (editor), Aircraft Materials. Strength and Reliability of Structural Materials [In Russian], ONTI, Moscow (1977).

    Google Scholar 

  11. S. Ya. Yarema, “Investigation of fatigue crack growth and kinetic diagrams of fatigue failure,” Fiz.-Khim. Mekh. Mater.,13, No. 4, 3–22 (1977).

    Google Scholar 

  12. V. V. Panasyuk, A. E. Andreikiv, and S. E. Kovchik, Methods of Evaluating the Crack Resistance of Structural Materials [in Russian], Naukova Dumka, Kiev (1977).

    Google Scholar 

  13. S. Ya. Yarema, “Some problems of the methodology of fatigue crack resistance of materials,” Fiz.-Khim. Mekh. Mater.,14, No. 4, 68–77 (1978).

    Google Scholar 

  14. V. T. Troshchenko, A. V. Prokopenko, and V. V. Pokrovskii, “Investigation of the characteristics of fracture toughness of metals under cyclic loading. Communications I and II,“ Probl. Prochn., No. 2, 8–15; No. 3, 3–8 (1978).

    Google Scholar 

  15. Branch Standard. Metals. Method of Determining Fatigue Crack Growth [in Russian].

  16. Draft of Guiding Technical Materials (PRTM 1-78). Methodology of Evaluating the Crack Resistance of Metals under Cyclic Loading [in Russian], TsNII MPS, Moscow (1978).

  17. Methodological Instructions. Stress Analysis and Tests of Mechanical Properties in Engineering. Methods of Mechanical Tests of Metals. Determination of the Characteristics of Fracture Toughness (Crack Resistance) under Static Loading. Second Version [in Russian], Gosstandart SSSR, VNIINMASh, Moscow (1978).

  18. GOST 23026–78. Metals. Methods of Fatigue Testing.

  19. V. V. Panasyuk, A. E. Andreikiv, S. E. Kovchik, I. N. Pan'ko, and V. A. Zazulyak, “Methodology of fatigue fracture tests of materials with large cross section,” Fiz.-Khim. Mekh. Mater.,13, No. 1, 98–105 (1977).

    Google Scholar 

  20. A. A. Gudkov and V. S. Zoteev, “Fatigue crack propagation in high-strength low-alloy steel,” in: Methods of Testing Metals [in Russian], No. 3, Metallurgiya, Moscow (1976), pp. 180–193.

    Google Scholar 

  21. V. T. Troshchenko, V. V. Pokrovskii, and A. V. Prokopenko, “Determination of the fracture toughness by the results of fatigue tests under bending with rotation,” Probl. Prochn., No. 1, 3–8 (1966).

    Google Scholar 

  22. V. M. Markochev and A. T. Kraev, “Method of investigation fatigue crack growth with constant double amplitude of the stress-concentration factor,” Zavod. Lab.,42, No. 4, 469–473 (1976).

    Google Scholar 

  23. P. C. Paris, “The fracture mechanics approach to fatigue,” in: Fatigue — an Interdisciplinary approach, Syracuse University Press (1964), pp. 107–127.

  24. Fatigue Crack Propagation, ASTM STP 415, ASTM (1967).

  25. Stress Analysis of Growth of Cracks, ASTM STP 513, ASTM (1972).

  26. N. E. Frost, K. J. Marsh, and L. P. Pook, Metal Fatigue, Oxford Clarendon Press (1974).

  27. W. G. Clark, Jr., and S. J. Hudak, Jr., “Variability on fatigue crack growth rate testing,” J. Test. Eval., No. 6, 454–476 (1975).

    Google Scholar 

  28. T. C. Lindley, C. E. Richards, and R. O. Ritchie, “Mechanics and mechanism of fatigue crack growth in metals: a review,” Metall. Met. Form., No. 9, 268–280 (1976).

    Google Scholar 

Download references

Rights and permissions

Reprints and permissions

About this article

Cite this article

Determination of the characteristics of the resistance to crack propagation (crack resistance) of metals under cyclic loading (methodological instructions). Mater Sci 15, 261–275 (1979). https://doi.org/10.1007/BF00728946

Download citation

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF00728946

Keywords

Navigation