Application of the Electromechanical Surface Damping to the Vibration Control of a Cantilever Plate

Author:

Ghoneim H.1

Affiliation:

1. Department of Mechanical Engineering, Rochester Institute of Technology

Abstract

The electromechanical surface damping technique (EMSD) is applied to suppress the bending and twisting (torsional) peak vibration amplitudes of a cantilever plate. The technique is a combination of the constrained layer damping (CLD) and the shunted piezoelectric methods in which the constraining layer of the CLD is replaced by a shunted piezoelectric ceramic. The frequency responses, to a white noise random base excitation, of the EMSD-treated plate at the vicinity of the first and second bending and twisting resonant frequencies are determined and compared with the corresponding responses of the CLD treatment. It is shown that, in general, the EMSD treatment provides more suppression of the bending and twisting peak vibration amplitudes than the conventional CLD treatment. The EMSD treatment, however, is more effective at higher frequencies and lower temperatures, which suggests that the EMSD method can be applied to extend the effective range of frequencies and/ or temperatures of the conventional CLD method. The work presented is primarily analytical; however, a crude and preliminary experimental work is presented to demonstrate the feasibility of the EMSD technique.

Publisher

ASME International

Subject

General Engineering

Reference14 articles.

1. Agnes, G. S., and Napolitano, K., 1993, “Active Constrained Layer Viscoelastic Damping,” Proceedings of 34th SDM Conference, pp. 3499–3506

2. Azvine, B., and Tomlinson, G. R., 1993, “Vibration Control via Active Damping,” Proceedings Conference on Active Control.

3. Baz, A., and Ro, J., 1993, “Active Constrained Layer Damping,” Proceedings of Damping 93, San Francisco, CA., pp. IBB 1–23.

4. Baz, A., and Ro, J., 1994, “Performance Characteristics of Active Constrained Layer Damping,” Shock and Vibration, in press.

5. Cremer, L., Heckel, M., and Ungar, E., 1988, Structure-Borne Sound: Structural Vibrations and Sound Radiation at Audio Frequencies, Springer-Verlag, Berlin.

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