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Dynamics of gas-turbine-engine blades subject to a nonsteady flow

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Literature cited

  1. A. S. Vol'mir, V. F. Pavlenko, and A. T. Ponomarev, "Use of composite materials in aircraft designs," Mekh. Polim., No. 1, 105–112 (1972).

  2. G. S. Pisarenko and L. E. Ol'shtein, "Problems of the aeroelasticity of blades in turbomachinery," Probl. Prochn., No. 8, 3–8 (1974).

  3. D. N. Gorelov, V. B. Kurzin, and V. É. Sarén, Aerodynamics of a Lattice in a Nonsteady Stream [in Russian], Novosibirsk (1971).

  4. G. S. Samoilovich, Excitation of Blade Vibrations in Turbomachinery [in Russian], Moscow (1975).

  5. B. F. Shorr and V. A. Rudavets, "Computation of natural frequencies and forms of three-dimensional vibrations in twisted compressor blades," in: Theory of Shells and Plates [in Russian], Moscow (1973), pp. 550–555.

  6. S. M. Belotserkovskii, B. K. Skripach, and V. G. Tabachnikov, A Vane in a Nonsteady Gas Stream [in Russian], Moscow (1971).

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  8. A. S. Vol'mir, Shells in a Liquid and Gaseous Stream. Problems of Aeroelasticity [in Russian], Moscow (1976).

  9. R. B. Rikards and G. A. Teters, Stability of Shells Formed from Composite Materials [in Russian], Riga (1974).

  10. S. M. Belotserkovskii, A. S. Vol'mir, and A. T. Ponomarev, "Study of the behavior of plates and shells using integrodifferential equations of nonsteady aeroelasticity," Izv. Akad. Nauk SSSR, Mekh. Tverd. Tela, No. 6, 85–94 (1974).

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  12. R. S. Martin, G. Peters, and J. H. Willinson, "The QR-algorithm for real Hessenberg matrices," Numerische Math., No. 14, 219–231 (1970).

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Moscow. Translated from Mekhanika Polimerov, No. 2, pp. 257–264, March–April, 1978.

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Vol'mir, A.S., Gulyaev, V.V., Mikhnev, V.F. et al. Dynamics of gas-turbine-engine blades subject to a nonsteady flow. Polymer Mechanics 14, 206–212 (1978). https://doi.org/10.1007/BF00857463

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  • DOI: https://doi.org/10.1007/BF00857463

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