Forced damping vibration strategies have a paramount relevance in all those cases where surface vibrations represent disturbances. Knowing that surfaces show different resonant modes of vibration related to their geometry we have selected a cantilever beam that has only one principal resonant frequency. Therefore we have developed a circuit that, using the opposite phase signals technique, reduces the oscillation time of the cantilever beam. Different sensors as accelerometer, piezoelectric, infrared proximity detector have been used to read out the vibration of the cantilever.

Lo Castro, F., Bisegna, P. (2006). Forced damping vibration of a cantilever beam. In Sensors and microsystems: proceedings of the 11th italian conference (pp.307-311). World Scientific [10.1142/9789812793393_0061].

Forced damping vibration of a cantilever beam

BISEGNA, PAOLO
2006-01-01

Abstract

Forced damping vibration strategies have a paramount relevance in all those cases where surface vibrations represent disturbances. Knowing that surfaces show different resonant modes of vibration related to their geometry we have selected a cantilever beam that has only one principal resonant frequency. Therefore we have developed a circuit that, using the opposite phase signals technique, reduces the oscillation time of the cantilever beam. Different sensors as accelerometer, piezoelectric, infrared proximity detector have been used to read out the vibration of the cantilever.
11th italian conference onsSensors and microsystems
Lecce
2006
11
Siciliano, P; Capone, S; Di Natale, C; D'Amico, A.
Rilevanza internazionale
contributo
9-feb-2006
2006
Settore ICAR/08 - SCIENZA DELLE COSTRUZIONI
Settore ING-INF/01 - ELETTRONICA
English
Dynamics; vibration damping; accelerometer; piezoelectric; infrared proximity detector
http://www.worldscibooks.com/materialsci/6759.html
Intervento a convegno
Lo Castro, F., Bisegna, P. (2006). Forced damping vibration of a cantilever beam. In Sensors and microsystems: proceedings of the 11th italian conference (pp.307-311). World Scientific [10.1142/9789812793393_0061].
Lo Castro, F; Bisegna, P
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/31456
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