Optoelectronic discrete-phase converter for automated control systems of geometric parameters of the surface of gas turbine engine blades

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Abstract

Gas turbine engine blades are products with a complex spatial configuration that requires high manufacturing precision, which in turn is determined by the complex overall balance between aerodynamic, strength characteristics and production and technological requirements. During the production of blades, the surface profile in various sections of the blade airfoil is subject to control, among others. Deviations in the shape of the theoretical section and the installation angle of the profile lead in practice to a deviation of the natural vibration frequency of the blades from the calculated values. Increasing the accuracy of geometry control in the technological process of manufacturing gas turbine engine blades is in demand and important.

A measuring device developed by Samara University is briefly described: an optoelectronic discrete-phase converter (OEDPC), which is designed for non-contact determination of geometric parameters – the profile and curvature of gas turbine engine blades. The implementation of the OEDPC is based on a method for determining the parameters of the surface geometry of a gas turbine engine blade, which consists in measuring the deviations in time of the position of the maximum information signal from the reference one and makes it possible to increase the accuracy of determining the profile and curvature of the blade airfoil while maintaining performance at the level of the best examples of optoelectronic converters of a complex-profile surfaces.

About the authors

Andrey B. Prokofev

Samara National Research University

Email: prokofev.ab@ssau.ru

Doctor of Science (Engineering), Professor of the Department of Theory of Aircraft Engines named after V. P. Lukachev, First Vice-Rector – Vice-Rector for Research

Russian Federation, Samara

Sergey A. Danilin

Samara National Research University

Author for correspondence.
Email: danilin.sa@ssau.ru

Candidate of Science (Engineering), Associate Professor of the Department of Radioelectronic Systems

Russian Federation, Samara

Arkadiy Zh. Chernyavskiy

Samara National Research University

Email: arkadiy.chernyavskiy@vaz.ru

Candidate of Science (Engineering), Engineer of the Department of Radioelectronic Systems

Russian Federation, Samara

Aleksandr I. Danilin

Samara National Research University

Email: danilin.ai@ssau.ru

Doctor of Science (Engineering), Professor of the Department of Radioelectronic Systems

Russian Federation, Samara

References

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  2. Fesko, Yu. A. (2014), “Development and research of optical-electronic methods for determining the three-dimensional shape of objects”, Ph.D. Thesis, Novosibirsk, 167 p. (In Russian)
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  4. Galiulin R. (2005), Sposob kontrolya profilya izdeliya i ustroystvo dlya ego osushchestvleniya [A method for monitoring the profile of a product and a device for its implementation], Russia, Pat. 2263879. (In Russian)
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  6. Sysoev, E. V. (2010), “Measuring the micro- and nanorelief of a surface using low-coherence interferometry methods”, Ph.D. Thesis, Novosibirsk, 136 p. (In Russian)
  7. Danilin, A., Danilin, S., Teryaeva, O. and Greckov, A. A. Samara National Research University named after Academician S. P. Korolev (2015), Sposob opredeleniya uglovyh polozheniy poverhnosti ob“ekta i ustroystvo dlya ego osushchestvleniya [A method for determining the angular positions of an object's surface and a device for its implementation], Russia, Pat. 2548939. (In Russian)
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  9. Danilin, A. I. and Chernyavsky, A. Zh. (2009), “Criteria for discrete-phase control of the working state of blades and their feasibility in automatic control systems for turbine units”, Vestnik Samarskogo gosudarstvennogo aerokosmicheskogo universiteta, vol. 1, no 17, pp. 107-115. (In Russian)
  10. Danilin, A., Chernyavskij, A. and Danilin, S. Samara National Research University named after Academician S. P. Korolev (2017), Method for determining the oscillation parameters of turbo-machine blades and a device for putting the same into practice, US Patent 9810090.
  11. Danilin A., Chernyavskiy A., Danilin S. and Greckov A. Samara National Research University named after Academician S. P. Korolev (2016), Sposob opredeleniya parametrov kolebaniy lopatok vrashchayushchegosya kolesa turbomashiny i ustrojstvo dlya ego osushchestvleniya [A method for determining the vibration parameters of the blades of a rotating wheel of a turbomachine and a device for its implementation], Russia, Pat. 2584723. (In Russian)

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Copyright (c) 2024 Prokofev A.B., Danilin S.A., Chernyavskiy A.Z., Danilin A.I.

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Journal of Dynamics and Vibroacoustics

ISSN 2409-4579 (Online)

Publisher and Founder: Samara National Research University, 34, Moskovskoye shosse, Samara, 443086, Russian Federation.

Extract from the register of registered media

Editor-in-chief:  Academician of the RAS
E. V. Shakhmatov 

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Editorial address: room 324, 43, Gaya street, Samara, 443086

Address for correspondence: 34, Moskovskoye shosse, Samara, 443086, Russian Federation, Samara National Research University (room 324, building 14)

Phone: 8 (846) 267 47 66

e-mail: dynvibro@ssau.ru

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