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66.    Kirały, LJ., "Digital System for Dynamie Turbinę Engine Blade Displacement Meesure-


56.    Leissa, A.W. and Lee. J.K., "Vibration Analysis of Turbinę Engine Blades." NASA/Lewis Work-shop Struć. Dynam. (June 15.1982).

57.    Rao, J.S.. "Turbomachine 8lade Vibration," Theory Machines Mechs.. Proc. 5th World Congress.. Montreal. Canada. Vol. 1. pp 637-640. ASME (1979).

58.    Murthy, V.R. and Hammond, C.E., "Vibration Analysis of Rotor Blades with Pendulum Ab-sorbers." J. Aircraft. 18 (1), pp 23-29 (1981)

59.    Muszyńska, A.. Jones, D.I.G., Lagnese. T.. and Whitford. L., "On Nonlinear Response of Multiple Blade Systems." Shock Vib. Buli., U.S. Naval Res. Lab., Proc. No. 51, Pt. 3, pp 89-110(1981).

60.    Venkatesan. C. and Nagaraj, V.T., "Nonlinear Flapping Vibrations of Rotating Blades," J. Sound Vib., 84 (4), pp 549-556 (1982).

61.    McKnight, R.L., Laflen. J.H., Halford, G.R., and Kaufman, A., "Turbinę Blade Nonlinear Structural and Life Analysis." J. Aircraft, 20 (5), pp 475-480 (1983).

62.    Kaufman, A. and Gaugłer, R.E., "Nonlinear Three-Dimensional Finite Element Analysis of Air-Cooled Gas Turbinę Blades," NASA Tech. Rept. Paper 1669 (Apr 1980).

63.    Aiello, R.A. and Chamis, C.C., "Large Dis-placement and Stability Analysis of Nonlinear Propeller Structures," Rept. No. NASA TM 82850.

64.    Kanunnikov. I.P. and Siderenko. M.K., "A Study of Alternating Stresses in Gas Turbinę Engine Blades by Spectral Analysis," Strength Matl., n (12). pp 1441-1447 (1980).

65.    Chien. C.H., Swinson, W.F., et al., "Develop-ment of Basic Theories and Techniques for Determining Stresses in Rotating Turbinę or Compressor Blades," NASA Contr. Rept. No. NASA-CR-163190 (1980).

ments," Meas. Methods Rotating Components Turbomech., Pres. Fluids Engrg. Gas Turbinę Conf. Prod. Show. New Orleans, LA, ASME PubL.NY.pp 255-262 (1980).

67.    McCarty, P.E., Thompson. Jr. J.W., and Ballard Sverdrup. R.S., "Non-interference Technique for Measurement of Turbinę Engine Compressor Blade Stress," J. Aircraft, 19 (1), pp 65-70 (1982).

68.    Bogoradovskii, G.I., Ostrovskii, L.I.. Stepanov, A.M., and Ostashkov, A.I., "lnvestigation of Dynamie Strength of Turbinę Rotor Blades." Energomashinostroenie, (2), pp 9-12 (1979) (In Russian).

69.    Jinboh, K., Aono, H., and Hagiwara, Y., "Dynamie Strain and Temperaturo Measurement of Aero-Engine Turbinę Blade," Meas. Methods Rotating Components Turbomech., Pres. Fluids Engrg. Gas Turbinę Conf. Prod. Show. New Orleans. LA. ASME Publ., NY, pp 247-254 (1980).

70.    Hanamura. Y., Tanaka, H., 8nd Yamaguchi, K., "A Simplified Method to Measure Unsteedy Forces Acting on the Vibrating Blades in Cascade.” Buli. JSME. 23 (180), pp 880-887 (1980).

71.    Arkad'ev, D.A., Karpin, E.B., Temkin, S.G.. and Zubenkova, T.V., "Dynamie Strength of the K6-30P Driving Turbinę Blades." Energomashinostroenie. (3), pp 10-12 (Mar 1981) (In Russian).

72.    Glober, M. and Mały, W., "Alternating Stress Measurements on Model and Actual Turbinę Blades." Rept. No. PNR-90101, Trans. 15784/ TLT-00835, N82-22534 (Sept 1981); Pres. 6th Intl. Conf. Exptl. Stress Anal. (1978).

73.    Beckmann, J. 8nd Wachter, J., "Alternate Stressing of a Turbinę Blade by Nonuniform Flow," VDI Berichte No. 361, pp 71-79 (1980) (In German).

74.    Wachter. J., Bechmann, J., and Wolter, I., "lnvestigation of Turbinę Blade Vibration due to Flow Distortion and Damping Effects,

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