Experimental determination of vibration characteristics of turbine blades with an immunity digital speckl interferometer

Михаил Романович Ткач, Юрий Григорьевич Золотой, Ирина Юрьевна Жук, Юрий Николаевич Галинкин, Аркадий Юрьевич Проскурин, Владимир Сергеевич Ключник

Abstract


The paper notes the wide possibilities and high efficiency of vibration diagnostics of parts and assemblies of power units by the method of electronic speckle interferometry (ESI), shows the feasibility of developing and improving methods for obtaining speckle interferograms of vibrating objects. A patented by the authors' scheme of a digital speckle interferometer (DSI) for determining the dynamic parameters of products is presented. The diffuse reference wave greatly simplifies its alignment, mainly the aligned channels of propagation of interfering beams determine the resistance to mechanical and thermal disturbances, and the separate beam splitter and diffuser make it easy to optimize the optical scheme for the object under study. Speckle interferograms are obtained by speckle correlation methods and a developed method for determining the contrast of the dynamic speckle pattern. It does not impose special requirements on the parameters of the video system, does not require the use of a specialized video camera, and allows, by using a rotary platform, to organize a panoramic view of the oscillatory forms of asymmetric structures. The use of this method in combination with the proposed optical scheme provides an express analysis of products in off-bench conditions. The increased noise immunity of the installation allows the determination of the spectrum of frequencies and vibration modes (SFVM) of samples under free boundary conditions, which is rarely realized in interferometry. The paper presents examples of such speckle interferograms, the expediency of obtaining which is important in the resonance study of the elastic properties of the material and vibration resonance flaw detection. The implemented software and hardware solutions increase the resolution and visibility of the band patterns; facilitate their quantitative interpretation and the extraction of numerical information on the distribution of vibration amplitudes. The area of scientific interests and the specificity of the author's developments have determined the preferential adaptation of the proposed device with a complex of software and methodological developments for vibration testing of gas turbine engine (GTE) blades.

Keywords


speckle interferometry; holography; GTE blades; resonant frequencies; interferogram

References


Birger, I. A. Raschet na prochnost' detalej mashin [Strength calculation of machine parts]. Moscow, Mashinostroenie Publ., 1993. 640 p.

Makaeva, R. H., Karimov, A. H., Careva, A. M. Diagnostika detalej i uzlov turbomashin po ih vibracionnym harakteristikam s primeneniem golograficheskoj interferometrii [Diagnostics of parts and assemblies of turbomachines by their vibration characteristics using holographic interferometry]. Kazan, Kazan Publishing House. state tech. University, 2011. 242 p.

Vest, Ch. Golograficheskaja interferometrija [Holographic interferometry]. Moscow, Mir Publ., 1982. 504 p.

Jones, R., Wykes, K. Golograficheskaja i spekl-interferometrija [Holographic and speckle interferometry]. Moscow, Mir Publ., 1986. 328 p.

Zhuzhukin, A. I. Primenenie spekl-interferometrii dlja issledovanija kolebanij krupnogabaritnyh konstrukcij gazoturbinnyh dvigatelej [The use of speckle interferometry for the study of oscillations of large-sized structures of gas turbine engines]. The bulletin of Bauman Moscow State Technical University. Mechanical engineering, 2017, no. 3, pp. 66-74. DOI: 10.18698/0236-3941-2017-3-66-74.

Zhuzhukin, A. I., Soljannikov, V. A. Spekl interferometr dlja panoramnogo issledovanija kolebanij turbinnyh lopatok [Speckle interferometer for panoramic investigation of turbine blade oscillations]. Bulletin of the Samara Scientific Center of the Russian Academy of Sciences, 2012, pp. 59–62.

Zhuzhukin, A. I., Soljannikov, V. A. Vibrometricheskaja ustanovka dlja poluchenija spekl- interferogramm s vysokim razresheniem [Vibrometric setup for obtaining high-resolution speckle interferograms]. Bulletin of the Samara Scientific Center of the Russian Academy of Sciences, 2009, pp. 210–213.

Tkach, M. R., Zolotoj, Ju. G., Proskurіn, A. Ju., Galinkіn, Ju. M., Zhuk, І. Ju., Kluchnyk, V. S. Pry`strij z pidvy`shhenoyu zavadostijkistyu dlya doslidzhennya koly`van` konstrukcij metodom elektronnoyi spekl-interferometriyi [Device with increased noise immunity for the study of vibrations of structures by electronic speckle interferometry]. Patent UA, № 146326, 2021.

Zhuzhukin, A. I., Soljannikov, V. A. Metod umen'shenija chuvstvitel'nosti spekl-interferometra pri issledovanii vibracij detalej turbomashin [A method for reducing the sensitivity of a speckle interferometer in the study of vibrations of parts of turbomachines]. Bulletin of the Samara State Aerospace University, Samara, OAO Kuznetsov Publ., 2014, no. 1 (43), pp. 194-200.

Tkach, M. R., Zolotiy, Yu. G., Dovgan, D. V., Guk, I. Yu. Sposib vy`znachennya chastot i form rezonansny`x koly`van` lopatok GTD metodom spekl-interferometriyi [Method of determining of forms of resonant vibrations shapes of blades of gas turbine engine by speckle interferogram]. Patent UA, №103068. 2015.

Komarov, Ju. S. Pomehoustojchivyj cifrovoj spekl-interferometr dlja vibrometrii obektov na osnove metoda usrednenija po vremeni. Diss. k. t. n. [Noise-resistant digital speckl-interferometer for vibrometry of objects on the basis of the method of averaging in time PhD diss.]. Samara, 2004. 234 p.

Tkach, M. et al. Improving the Noise Immunity of the Measuring and Computing Coherent-Optical Vibrodiagnostic Complex. In: Integrated Computer Technologies in Mechanical Engineering - 2020. ICTM 2020. Lecture Notes in Networks and Systems, 2021, vol. 188, pp. 277-289. Springer, Cham. DOI: 10.1007/978-3-030-66717-7_23.

Gudmen, J. Statisticheskaja optika [Statistical optics]. Moscow, Mir Publ., 1988. 528 p.

Gusak, A. A., Brichikova, E. A. Teorija verojatnostej [A reference manual for solving problems]. Minsk, TetraSystems Publ., 2000. 288 p.

Nihamkin, M. Sh., Solomonov, D. G. Primenenie jeksperimental'nogo modal'nogo analiza dlja identifikacii parametrov modeli sloistogo ugleplastika [Application of Experimental Modal Analysis to Identify the Parameters of the Laminated CFRP Model]. PNRPU Bulletin. Aerospace engineering, Perm, Perm National Research Polytechnic University, 2017, no. 51, pp. 124-135.




DOI: https://doi.org/10.32620/aktt.2021.4sup2.07