Structural multi-modal damping by optimizing shunted piezoelectric transducers

Authors

  • Stéphanie Livet Snecma, SAFRAN Group Rond-Point René Ravaud – Réau F-77550 Moissy Cramayel
  • Manuel Collet Femto-ST Institute, Applied Mechanics Dpt 24 rue de l’Epitaphe F-25000 Besançon
  • Marc Berthillier Femto-ST Institute, Applied Mechanics Dpt 24 rue de l’Epitaphe F-25000 Besançon
  • Pierrick Jean Snecma, SAFRAN Group Rond-Point René Ravaud – Réau F-77550 Moissy Cramayel
  • Jean-Marc Cote Femto-ST Institute, Applied Mechanics Dpt 24 rue de l’Epitaphe F-25000 Besançon

DOI:

https://doi.org/10.13052/EJCM.20.73-102

Keywords:

piezoelectricity, shunt circuit design, semi-active control, damping optimization

Abstract

The capacity of different auto-supplied devices using shunted piezoelectric circuits are studied here to improve structural damping by avoiding implementation of complex and heavy control devices. The presented technique uses a dedicated numerical piezo-mechanical model combining both mechanical and electrical coupling parameters. An original methodology are also introduced for optimizing the parameters of electrical shunt circuits connected to piezoelectric elements and also structural locations of these integrated transducers. The results, experimentally validated (on beams and a plate), demonstrate that vibrations can be significantly reduced when shunted piezoelectric devices are mounted on a real structure. Finally, the proposed methodology is used for optimizing shape and location of the shunted piezoelectric patches to damp several modes of a plate.

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Published

2011-11-20

How to Cite

Livet, S. ., Collet, M. ., Berthillier, M. ., Jean, P. ., & Cote, J.-M. . (2011). Structural multi-modal damping by optimizing shunted piezoelectric transducers. European Journal of Computational Mechanics, 20(1-4), 73–102. https://doi.org/10.13052/EJCM.20.73-102

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