Strength of Materials

, Volume 13, Issue 8, pp 953–955 | Cite as

Low-cycle fatigue of welds of titanium alloy AT3

  • S. M. Kutepov
  • T. S. Pleshakova
  • V. M. Rachkov
Scientific-Technical Section
  • 27 Downloads

Keywords

Fatigue Titanium Titanium Alloy 
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Literature cited

  1. 1.
    I. I. Kornilov, K. P. Markovich, and V. S. Mikheev, “Basic properties of titanium alloy AT3 and its possible applications,” in: Titanium Alloys for High Technology [in Russian], Moscow (1968), pp. 195–201.Google Scholar
  2. 2.
    E. A. Adamovich, N. V. Korotkov, M. M. Isaeva, et al., “Tests of hydrolysis equipment made of titanium alloy AT3,” Gidroliz. Lesokhim. Promst., No. 3, 25–29 (1973).Google Scholar
  3. 3.
    M. V. Danilov, S. M. Kutepov, and L. S. Pritykina, “Study of the strength properties of titanium alloy AT3,” Khim. Neft. Mashinostr., No. 11, 23–24 (1975).Google Scholar
  4. 4.
    V. E. Blashchuk, A. G. Voinitskii, V. F. Grabin, et al., “Resistance of titanium alloys AT2 and AT3 and their welds to deformation at high and low temperatures,” Probl. Prochn., No. 7, 96–99 (1972).Google Scholar
  5. 5.
    V. E. Blashchuk, S. M. Gurevich, G. M. Shelenkov, et al., “Tendency of welds of titanium alloy AT3 to undergo corrosive-mechanical fracture,” Svar. Proizvod., No. 1, 39–40 (1974).Google Scholar
  6. 6.
    B. F. Langer, “Design of pressure vessels for low-cycle endurance,” Trans. ASME, No. 3, 97–113 (1963).Google Scholar
  7. 7.
    S. I. Kishkina, F. R. Kulikov, L. A. Stronina, et al., “Low-cycle fatigue of welds of (α + β)-alloys of titanium,” in: Titanium. Physical Metallurgy and Engineering (Transactions of the Third International Conference on Titanium, Vol. 2), Moscow (1978), pp. 273–281.Google Scholar
  8. 8.
    V. T. Troshchenko, V. A. Strizhalo, B. O. Morozov, et al., “Investigation of the low-cycle fatigue of titanium alloys under pulsating loading,” Kosm. Issled. Ukr., No. 6, 39–45 (1975).Google Scholar
  9. 9.
    V. A. Strizhalo, A. I. Zinchenko, B. S. Morozov, and A. A. Il'in, “Investigation of the low-cycle fatigue of welds of aluminum and titanium alloys at +20 and −196 °C,” in: Low-Cycle Fatigue of Welded Structures [in Russian], Leningrad (1973), pp. 71–77.Google Scholar
  10. 10.
    V. V. Larionov, “Investigation of the low-cycle strength of structural steel welds in a pulsating load cycle,” Probl. Prochn., No. 10, 23–26 (1975).Google Scholar

Copyright information

© Plenum Publishing Corporation 1982

Authors and Affiliations

  • S. M. Kutepov
    • 1
  • T. S. Pleshakova
    • 1
  • V. M. Rachkov
    • 1
  1. 1.All-Union Scientific-Research and Design Institute of Chemical EngineeringMoscow

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