A finite element formulation for vibration control and suppression of intelligent structures with a new piezoelectric plate element is presented. On the basis of a negative velocity feedback control law, a general method of active vibration control and suppression for intelligent structures is put f
FRICTION CONTROL FOR VIBRATION SUPPRESSION
β Scribed by L. GAUL; R. NITSCHE
- Publisher
- Elsevier Science
- Year
- 2000
- Tongue
- English
- Weight
- 178 KB
- Volume
- 14
- Category
- Article
- ISSN
- 0888-3270
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β¦ Synopsis
Friction damping in bolted joint connections of large space structures turned out to be a major source of damping. For vibration suppression, the joints are designed such that the normal force in a frictional interface is controlled which improves the damping performance. The use of active control to vary the normal contact force in a joint by means of a piezoelectric element is explored. A model consisting of two elastic beams connected by a single active joint is considered. A friction model with velocity-dependent dynamics is used to describe the friction phenomena. A control law for friction dampers which maximises energy dissipation instantaneously by controlling the normal force at the friction interface is proposed. The e!ect of displacement-and velocity-induced friction dynamics is considered for the design of the control law. We arrive at a controller which prevents frictional energy stored as potential energy in a bristle model from being returned to the system.
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