Theoretical development and closed-form solution of nonlinear vibrations of a directly excited nanotube-reinforced composite cantilevered beam
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering
Link
http://link.springer.com/content/pdf/10.1007/s00419-005-0426-1.pdf
Reference22 articles.
1. Avouris, P., Hertel, T., Martel, R., Schmidt, T., Shea, H.R., Walkup, R.E.: Carbon nanotubes: nanomechanics, manipulation and electronic devices. Appl Surf Sci 141, 201–209 (1999)
2. Rajoria, H., Jalili, N.: Determination of strength and damping characteristics of carbon nanotube-epoxy composites. In: Proceedings of the 2004 ASME international mechanical engineering congress and exposition, Anaheim, CA (2004)
3. Bailey, T., Hubbard, J.E. Jr.: Distributed piezoelectric polymer active vibration control of a cantilever beam. J Guid Control Dyn 8, 605–611 (1985)
4. Wang, Q., Quek, S.T.: Flexural vibration analysis of sandwich beam coupled with piezoelectric actuator. Smart Mater Struct 9, 103–109 (2000)
5. Arafat, H.N., Nayfeh, A.H., Chin, C.: Nonlinear nonplanar dynamics of parametrically excited cantilever beams. Nonlin Dyn 15, 31–61 (1998)
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