Axial Fundamental Vibration Frequency of a Tapered Rod with a Linear Cross-Sectional Area Variation
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-030-39062-4_13
Reference10 articles.
1. Bert, C.W.: Relationship between fundamental natural frequency and maximum static deflection for various linear vibratory systems. J. Sound Vib. 162, 547–557 (1993). https://doi.org/10.1006/jsvi.1993.1139
2. Bert, C.W.: Application of a version of the Rayleigh technique to problems of bars, beams, columns, membranes, and plates. J. Sound Vib. 119, 317–326 (1987). https://doi.org/10.1016/0022-460X(87)90457-3
3. Bhat, R.B.: Obtaining natural frequencies of elastic systems by using an improved strain energy formulation in the Rayleigh-Ritz method. J. Sound Vib. 93, 314–320 (1984). https://doi.org/10.1016/0022-460X(84)90316-X
4. Chalah, F., Djellab, S.E., Chalah-Rezgui, L., Falek, K., Bali, A.: Tapered beam axial vibration frequency: linear cross-area variation case. APCBEE Procedia 9, 323–327 (2014). https://doi.org/10.1016/j.apcbee.2014.01.057
5. De Rosa, M.A., Franciosi, C.: The optimized Rayleigh method and mathematicain vibrations and buckling problems. J. Sound Vib. 191, 795–808 (1996). https://doi.org/10.1006/jsvi.1996.0156
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