MICROSTRUCTURE, FIELDS OF INTERNAL STRESSES AND ACOUSTIC CHARACTERISTICS OF METAL OF DESTROYED STEAM TURBINE ROTOR
https://doi.org/10.17073/0368-0797-2014-10-67-71
Abstract
To identify the causes of destruction and to prevent future similar cases, this paper focuses on research of the metal fragment of destroyed steam turbine rotor by destructive and non-destructive methods. Using methods of electronic microscopy, a metal structure condition of destroyed rotor is researched. The correlation between acoustic characteristic with metal microstructure parameters of destroyed rotor is established.
About the Authors
A. N. SmirnovRussian Federation
Dr. Sci. (Eng.), Professor
N. V. Ababkov
Russian Federation
Cand. Sci. (Eng.), Assist. Professor
E. V. Kozlov
Russian Federation
Dr. Sci. (Phys.-Math.), Professor, head of Department
N. A. Koneva
Russian Federation
Dr. Sci. (Phys.-Math.), Professor
N. V. Bykova
Russian Federation
engineer scientific and innovative management
References
1. Rezinskih V.F., Gladstein V.I., Avrutsky G.D. Uvelichenie resursa dlitel’no rabotayushchikh parovykh turbin [Increased resource of continuously operating steam turbines]. Moscow: MEI, 2007. 296 p. (In Russ.).
2. Smirnov A.N., Ababkov N.V. The integrated approach to assessing the work of energy equipment elements. Izvestiya Sam. scient. Center of RAS. 2010, Vol. 12, no. 1 (2). pp. 520–524. (In Russ.).
3. Ivanov J.F., Gromov V.E., Gorbunov S.V., Vorobiev S.V., Konovalov S.V. Gradient structure-phase states, formed in 08Cr18Ni10Ti steel by cycle fatigue to the failure. Fizika metallov i metallovede-nie. 2011, Vol. 112, no. 1. pp. 85–93. (In Russ.).
4. Zagretdinov I.S., Kostyuk A.G., Truhny A.D., Dolzhansky P.R. Destruction of 300 MW turbine unit of Kashirskaya State District Power Station: causes, consequences and output. Thermal Engineering. 2004, no. 5, pp. 5–15. (In Russ.).
5. Mitenkov F.M., Uglov A.L., Pichkov S.N., Poptsov V.M. On a new material control method of equipment damage of NPP, as well as hardware and software tools for its implementation. Problems of Mechanical Engineering, and the reliability of the machines. 1998, no. 3. pp. 3–9. (In Russ.).
6. Uglov A.L., Erofeev V.I., Smirnov A.N. Akusticheskii kontrol’ oborudovaniya pri izgotovlenii i ekspluatatsii [Acoustic monitoring of the equipment in manufactur-ing and operating]. Moscow: Nauka, 2009. 278 p. (In Russ.).
7. Perevalov S.P., Permikin B. C., Barhatov B.V., Hoffman Yu.M. Metal damage assessment, operating under high-temperature creep, by the acoustic method. Electric Station. 1992, no. 5. pp. 43–47. (In Russ.).
8. Uglov A.L., Poptsov V.M. The new automated system of NDT strength and reliability of machine elements and structures. Mechanical Engineering. 1993, no. 11, pp. 2–4. (In Russ.).
9. Murav’ev V.V., Murav’ev M.V., Becher S.A. The new automated system of NDT strength and reliability of machine elements and structures. Defectoscopy. 2002, no. 8, pp. 53–65. (In Russ.).
10. Smirnov A.N., Kozlov E.V. Substruktura, vnutrennie polya naprya zhenii i problema razrusheniya paroprovodov iz stali 12Kh1MF [Substructure, internal stress fi elds and the problem of the destruction of steel steam pipes of 12Cr1MoW grade]. Kemerovo: Kuzbassvuzizdat, 2004. 163 p. (In Russ.).Acknowledgements. The authors are grateful to the staff of the Department of Physics of TSUACE: Popova N.A., Fedorishcheva M.V., Sizonenko E.G., Nikonenko E.L. and Kalashnikov M.P. for the participation in research and Fenster B.R. (JSC “Energoprom-M”) for the participation in the production experiments.
11.
Review
For citations:
Smirnov A.N., Ababkov N.V., Kozlov E.V., Koneva N.A., Bykova N.V. MICROSTRUCTURE, FIELDS OF INTERNAL STRESSES AND ACOUSTIC CHARACTERISTICS OF METAL OF DESTROYED STEAM TURBINE ROTOR. Izvestiya. Ferrous Metallurgy. 2014;57(10):67-71. (In Russ.) https://doi.org/10.17073/0368-0797-2014-10-67-71