Life of gas turbine engine components under corrosive exposure


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Abstract

Currently, operation of gas turbine engines takes place in the aggressive medium of the atmosphere of some climatic regions. As a consequence, this may cause fast degradation of the strength properties of parts of gas turbine equipment and their subsequent premature failure. The problem of determining the life of gas turbine engine components under corrosive exposure is vital. We present an analysis of the state of the art in the field of assessment of gas turbine engine component life under the influence of corrosive environment in Russia and abroad. UEC-Aviadvigatel, FSUE “VIAM” and NPO “TSKTI” JSC formulated approaches to the development of the lifing process for engine parts operating in corrosive environment.

About the authors

M. V. Pivovarova

JSC “UEC-Aviadvigatel”

Author for correspondence.
Email: maria-assoll@yandex.ru

Design Engineer; Structural Analyst

Russian Federation

I. L. Gladkiy

JSC “UEC-Aviadvigatel”

Email: office@avid.ru

Candidate of Science (Engineering)
Head of Department

Russian Federation

References

  1. Inozemtsev A.A., Nikhamkin M.A., Sandratskiy V.L. Osnovy konstruirovaniya aviatsionnykh dvigateley i energeticheskikh ustanovok. T. 2. Kompressory. Kamery sgoraniya. Forsazhnye kamery. Turbiny. Vykhodnye ustroystva [Principles of designing aircraft engines and power plants. V. 2. Compressors. Combustion chambers. Afterburners.Turbines. Output devices]. Moscow: Mashinostroenie Publ., 2008. 365 p.
  2. Strength standards for civil aviation gas turbine engines. Moscow: CIAM Publ., 2004. 260 p. (In Russ.)
  3. Strength standards for ship and marine gas turbines. SPb: TsNII im. akademika Krylova Publ., 1986. (In Russ.)
  4. Enforcement of the Advisory Circular to Joint Aviation Requirements. Part 33. Airworthiness standards for auxiliary aircraft engines. Interstate Aviation Committee, Aviation Register, 2004. (In Russ.)
  5. Recommendation circular RC-AP-33.70-1.Guidance materials for the implementation of requirements for the main parts of the engine, the life of which is set in cycles. (Project.) Interstate Aviation Committee, Aviation Register, 2013. (In Russ.)
  6. Norms of strength calculation for the equipment and pipelines of nuclear power plants (PNAE Г-7-002-86). Moscow: Energoatomizdat Publ., 1989. 525 p. (In Russ.)
  7. Nesushchaya sposobnost' parogeneratorov vodo-vodyanykh energeticheskikh reaktorov / pod red. N.A. Makhutova [Bearing capacity of steam generator of water-moderated power reactor / ed. by N.A. Makhutov]. Moscow: Nauka Publ., 2003. 440 p.
  8. Problemy prochnosti i bezopasnosti vodo-vodyanykh energeticheskikh reaktorov / pod red. N.A. Makhutova, M.M. Gadenina [Strength and safety problems of water-moderated power reactors / ed. by N.A. Makhutov, M.M. Gadenin]. Moscow: Nauka Publ., 2008. 446 p.
  9. Getsov L.B. Materialy i prochnost' detaley gazovykh turbin [Materials and strength of gas turbine parts]. Moscow: Nedra Publ., 1996. 591 p.
  10. Begerman A.Z., Konopatova A.V., Leonova I.P. Influence of high-temperature corrosion on materials of turbine blades of marine gas turbine engines. Korroziya «Territorii «NEFTEGAZ». 2015. No. 3 (32). P. 12-14. (In Russ.)
  11. Beretta S., Loconte A. Development of models for life prediction under corrosion-fatigue. Available at: https://www.yumpu.com/en/document/view/19026365/development-of-models-for-life-prediction-under-corrosion-fatigue/35

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