Determination of natural frequencies and forms of turbine blade oscillations made of an alloy based on titanium aluminide
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Birger, I. A., & Shorr, B. F. Dinamika aviatsionnykh gazoturbinnykh dvigateley [Dynamics of aviation gas turbine engines]. Moscow, Mashinostroenie Publ., 1981. 232 р. (In Russian).
Vorob'yev, Yu. S. Kolebaniya lopatochnogo appapata tupbomashin [Vibrations of the blade apparatus of turbomachines]. Kyiv, Naukova dumka Publ., 1988. 224 p. (In Russian).
Shakalo, R. Yu., Yakushev, Yu. V., Reznik, S. B., Boris, S. B., & Pridorozhnyy, R. P. Razrabotka okhlazhdayemoy rabochey lopatki TVD s vnutristenochnoy sistemoy okhlazhdeniya [Development of a cooled HPT working blade with an intra-wall cooling system]. Vestnik dvigatelestroeniya Bulletin of Engine Building, 2018, no. 2, pp. 159-163. Available at: http://journal.zntu.edu.ua/vd/files/VD22018/VD(2)_2018.pdf. (accessed 5.02.2024). (In Russian).
Vorobiev, I. S., Makhnenko, O. V., Ovcharova, N. I., Berlizova, T. I., & Kulakov, P. N. Problemy ispol'zovaniya novykh materialov dlya lopatochnogo apparata turbomashin [Problems of new materials for turbomachine blading]. Visnyk NTU «KhPI». Seriya: Enerhetychni ta teplotekhnichni protsesy y ustatkuvannya – NTU "KhPI" Bulletin: Power and Heat Engineering Processes and Equipment, Kharkiv, NTU «KhPI» Publ., 2016, no. 9(1181), pp. 44-49. DOI: 10.20998/2078-774X.2016.09.06. (In Russian).
Lui, X., Lin, Q., Zhang, W., Van Horne, C., & Cha, L. Microstructure Design and Its Effect on Mechanical Properties in Gamma Titanium Aluminides. Metals, 2021, vol. 11, iss. 10, article no. 1644. DOI: 0.3390/met11101644.
Ibáñez-Pérez, J., Nó, M. L., Oehring, M., Clemens, H., & San Juan, J. M. Influence of Nb on Ti diffusion in γ-TiAl intermetallics studied by mechanical spectroscopy. Journal of Alloys and Compounds, 2021, vol. 867, article no. 158880. DOI: 10.1016/j.jallcom.2021.158880.
Grigorenko, S. G., Grigorenko, G. M., & Zadorozhnyuk, O. M. Intermetallidy titana. Osobennosti, svoystva, primenenie (obzor) [Intermetallics of titanium. Peculiar features, properties, application (Review)]. Sovremennaya Elektrometallurgiya – Electrometallurgy Today, 2017, no. 3 (128), pp. 51-58. DOI: 10.15407/sem2017.03.08. (In Russian).
Ovchinnikov, O. V., Akhonin, S. V., Beresos, V. O., Severin, A. Yu., Galenkova, O. B., & Shevchenko, V. G. Otrymannya perspektyvnykh splaviv na osnovi alyuminidiv tytanu dlya suchasnoho aviamotorobuduvannya [Producing advanced alloys based on titanium aluminides for modern aircraft engine manufacturing]. Suchasna elektrometalurhiya – Electrometallurgy Today, 2024, no. 1, pp. 9-16. DOI: 10.37434/sem2024.01.01. (In Ukrainian).
Il'in, A. A., Kolachev, B. A., & Pol'kin, I. S. Titanovye splavy. Sostav, struktura, svoistva. Spravochnik [Titanium alloys. Composition, structure, properties. Directory]. Moscow, VILS-MATI Publ., 2009. 520 p. (In Russian).
OST 1 90126-85. Splavy zharoprochnyye liteynyye vakuumnoy vyplavki [Heat-resistant vacuum casting alloys]. 11 p. Available at: https://bvbalyans.by/media/files_gost/ost_1_90126-85.pdf. (accessed 5.02.2024). (In Russian).
Sekachev, A. F., & Agarin, M. Yu. Opredelenie sobstvennykh chastot i form kolebanii lopatki MKE [Determination of the natural frequencies and forms of the oscillating blade using the finite element method]. Mezhdnarodnyi nauchno-issledovatel'skii zhurnal, 2014, no. 24, pp. 115-116. (In Russian).
Pridorozhnyi, R. P., Zin'kovskii, A. P., Merkulov, V. M., Sheremet'ev, A. V., & Shakalo, R. Yu. Raschetno-eksperimental'noe issledovanie sobstvennykh chastot i form kolebanii poparno bandazhirovannykh okhlazhdaemykh rabochikh lopatok turbin [Computational-experimental study of natural frequencies and forms of oscillating pair-banded cooled working blades of turbines]. Problemy prochnosti – Strength of Materials, 2019, no. 6, pp. 5-17. (In Russian).
DOI: https://doi.org/10.32620/aktt.2024.2.05