Experimental analysis of a cantilever beam with a shunted piezoelectric periodic array - Archive ouverte HAL
Article Dans Une Revue Journal of Intelligent Material Systems and Structures Année : 2011

Experimental analysis of a cantilever beam with a shunted piezoelectric periodic array

Résumé

The use of both shunted piezoelectric elements and periodic arrays have been investigated independently as well as used in conjunction to modify the vibration of a system. Piezoelectric patches bonded to a cantilever beam which are shunted with an active circuit, specifically a negative capacitance shunt, can control broadband flexural vibrations of a structure. Also, periodic arrays integrated into a structure allow for modification of propagating waves through the mechanical “stop-bands”. The performance of a combined shunted periodic piezoelectric patch array will be analyzed here by investigating the velocity amplitude of the beam upstream and downstream of the array section, and the number of control elements in the array. The negative capacitance shunts caused a global spatial average velocity reduction of 5 dB at the modal peaks from 500 to 5000 Hz. The reduction is shown to be greater in the downstream section of the beam. Also, by increasing the number of patches in the array the attenuation of the resonances increased nonlinearly. The results show that a negative capacitance periodic control array is an effective global vibration reduction system and has the ability to localize energy near the forcing of a structure.
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Dates et versions

hal-02300133 , version 1 (29-09-2019)

Identifiants

Citer

Benjamin S Beck, Kenneth Cunefare, Massimo Ruzzene, Manuel Collet. Experimental analysis of a cantilever beam with a shunted piezoelectric periodic array. Journal of Intelligent Material Systems and Structures, 2011, 22 (11), pp.1177-1187. ⟨10.1177/1045389X11411119⟩. ⟨hal-02300133⟩
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