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Chemical and Petroleum Engineering

, Volume 22, Issue 9, pp 434–436 | Cite as

Fracture toughness of titanium alloy AT6

  • S. M. Kutepov
  • V. A. Mikhailin
Design and Calculations
  • 21 Downloads

Keywords

Titanium Fracture Toughness Mineral Resource Titanium Alloy 
These keywords were added by machine and not by the authors. This process is experimental and the keywords may be updated as the learning algorithm improves.

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Literature cited

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    I. V. Bodrova, B. F. Gusakov, and S. M. Kutepov, “Strength of a large-dimension rotor for an alloy AT6 separator,” Khim. Neft. Mashinostr., No. 12, 23–24 (1984).Google Scholar
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    S. G. Glazunov, S. F. Vazhenin, G. D. Zyukov-Batyrev, and Ya. L. Ratner, Use of Titanium in the National Economy [in Russianl, Tekhnika, Kiev (1975), p. 200.Google Scholar
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    GOST 25.506-85. Computations and Strength Tests. Methods for the Mechanical Testing of Metals. Determination of Crack-resistance Characteristics Ductility, Fracture) under a Static Load [in Russian].Google Scholar
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    B. A. Drozdovskii and E. M. Morozov, “Methods of evaluating fracture toughness,” Zavod. Lab., No. 8, 995–1004 (1976).Google Scholar
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    S. I. Esina, S. M. Kutepov, and V. N. Skorokhodov, “Fracture-toughness characteristics of welded joints in titanium alloys VT6S and AT6,” Avtomat. Svarka, No. 6, 43–45 (1983).Google Scholar
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    S. I. Esina, S. M. Kutepov, and V. I. Rachkov, “Fracture toughness of forgings and stampings formed from high-strength titanium alloys,” Khim. Neft. Mashinostr., No. 12, 28–30 (1980).Google Scholar
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    B. A. Kolachev and A. V. Mal'kov, Physical Bases of Titanium Failure [in Russian], Metallurgiya, Moscow (1983).Google Scholar
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Copyright information

© Plenum Publishing Corporation 1987

Authors and Affiliations

  • S. M. Kutepov
  • V. A. Mikhailin

There are no affiliations available

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