Title of article :
Effect of debonding in active constrained layer damping patches on hybrid control of smart beam
Author/Authors :
Dongchang Sun، نويسنده , , Liyong Tong، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2003
Abstract :
A new model for a smart beam with a partially debonded active constrained layer damping (ACLD) patch is presented,
and the effects of the debonding of the ACLD patch on both passive and hybrid control are investigated. In this
model, both shear and compressional vibrations of the viscoelastic material (VEM) layer are considered. The moment
inertia and the transverse shear effect are also taken into account based on the Timoshenko s beam theory. The adhesive
layer between the host beam and the piezoelectric sensor patch is modeled as an elastic load transferring media. The
debonding of the ACLD patch is approximated by removing the VEM between the constraining layer and the host
beam in the debonding region, and the continuity conditions are imposed based on displacement continuity and force
balance. A modal velocity observer-based modal control scheme is also given to perform the active modal control of the
beam. In order to examine the effects of part debonding of the ACLD patch, the characteristic equation of the beam
treated with an ACLD patch is derived. The simulation example results show that an edge debonding of the ACLD
patch can significantly affect both passive and hybrid control. It is also found that the additional mode induced by the
debonding has unique effects on the modal damping ratios and frequencies of both open-loop and closed-loop system
Keywords :
Active constrained layer damping , Hybrid control , Piezoelectric transducers , Debonding
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures