Refined sandwich model for the vibration of beams with embedded shear piezoelectric actuators and sensors

  • Authors:
  • Marcelo A. Trindade;Ayech Benjeddou

  • Affiliations:
  • Department of Mechanical Engineering, São Carlos School of Engineering, University of São Paulo, Av. Trabalhador São-Carlense, 400, São Carlos, SP 13566-590, Brazil;Institut Supérieur de Mécanique de Paris, LISMMA/Structures, 3 Rue Fernand Hainault, 93407 Saint Ouen, France

  • Venue:
  • Computers and Structures
  • Year:
  • 2008

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Abstract

This work extends a previously presented refined sandwich beam finite element (FE) model to vibration analysis, including dynamic piezoelectric actuation and sensing. The mechanical model is a refinement of the classical sandwich theory (CST), for which the core is modelled with a third-order shear deformation theory (TSDT). The FE model is developed considering, through the beam length, electrically: constant voltage for piezoelectric layers and quadratic third-order variable of the electric potential in the core, while mechanically: linear axial displacement, quadratic bending rotation of the core and cubic transverse displacement of the sandwich beam. Despite the refinement of mechanical and electric behaviours of the piezoelectric core, the model leads to the same number of degrees of freedom as the previous CST one due to a two-step static condensation of the internal dof (bending rotation and core electric potential third-order variable). The results obtained with the proposed FE model are compared to available numerical, analytical and experimental ones. Results confirm that the TSDT and the induced cubic electric potential yield an extra stiffness to the sandwich beam.