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Assurance of highly reliable basic subassemblies for hydraulic-turbine equipment

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Power Technology and Engineering Aims and scope

A number of suggestions directed toward assurance of high reliability for components of hydraulic-turbine equipment operating under vibration-induced loads and a corrosive medium are examined.

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References

  1. V. V. Bolotin, Remaining Service Life of Machinery and Structures [in Russian], Mashinostroenie, Moscow (1990).

    Google Scholar 

  2. Guiding Technical Materials 108.242.02–83. Francis Hydraulic Turbines. Methods for Analysis of Impeller Strength [in Russian] (1985).

  3. Guiding Technical Materials 108.243.101–83. Kaplan Hydraulic Turbines. Analyses of Blade Fatigue Strength [in Russian] (1985).

  4. L. I. Domozhirov, Determination of Characteristics of Metal Resistance to Multiple-Cycle Fatigue from Positions of More Precisely Defined Approaches to Linear Fracture Mechanics. Author’s Abstract of Doctoral Thesis [in Russian], Izd. TsNIIMASh, Moscow (1998).

  5. L. I. Domozhirov, “Determination of fatigue-resistance characteristics in a corrosive medium on large-load bases,” Zavod. Lab., 68(10), 41 – 45 (2002).

    Google Scholar 

  6. N. A. Makhutov and L. I. Domozhirov, “Two-parameteric fracture criterion in connection with more precisely defined plasticzone measurements,” Zavod. Lab., 55(1), 54 – 59 (1989).

    Google Scholar 

  7. L. I. Domozhirov, “Remaining-life verification of impellers of hydraulic turbines with allowance for scatter of fatigue characteristics,” Gidrotekh. Stroit., No. 2, 24 – 29 (2005).

    Google Scholar 

  8. L. I. Domozhirov, “Determination of fatigue-resistance characteristics of metals from positions of short-crack mechanics,” Tekhnol. Mashinostr., No. 1, 44 – 48 (2001).

    Google Scholar 

  9. L. I. Domozhirov, “Safety-factor optimization for large-dimension components with consideration of small cracks,” Tyazh. Mashinostr., No. 2, 35 – 39 (2006).

  10. L. I. Domozhirov, “Substantiation of fatigue life of hydraulicturbine equipment with consideration of defects and crack-type damage,” Gidrotekh. Stroit., No. 7, 38 – 45 (2006).

    Google Scholar 

  11. USSR Author’s Certificate No. 1748010, L. I. Domozhirov and N. A. Makhutov, “Method of determining the endurance limit of structural components subject to asymmetric load cycles,” Byull. Izobr., No. 26 (1992).

  12. L. L. Smelkov, S. N. Gavrilov, S. M. Levina et al., “Assessment of remaining service life and probability of fail-safe operation of the No. 1 generating set at the Irkutsk HPP,” Gidrotekh. Stroit., No. 9, 21 – 26 (2009).

  13. V. E. Gmurman, Probability Theory and Mathematical Statistics [in Russian], Vysshaya Shkola, Moscow (1999).

    Google Scholar 

  14. L. I. Domozhirov, “Design, fabrication, and operation of equipment based on the safe-crack concept,” Armaturostroenie, No. 2, 44 – 48 (2010).

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Translated from Gidrotekhnicheskoe Stroitel’stvo, No. 12, December 2010, pp. 37 – 43.

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Domozhirov, L.I. Assurance of highly reliable basic subassemblies for hydraulic-turbine equipment. Power Technol Eng 45, 35–41 (2011). https://doi.org/10.1007/s10749-011-0220-x

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