Analytical modelling and experimental identification of viscoelastic mechanical systems
Capitolo di libro
Data di Pubblicazione:
2007
Citazione:
Analytical modelling and experimental identification of viscoelastic mechanical systems / Catania, G., Sorrentino, S. - In: Advances in Fractional Calculus: Theoretical Developments and Applications in Physics and Engineering / [a cura di] Sabatier, J.; Agrawal, O.P.; Tenreiro Machado, J.A.. - New York : Springer, 2007. - ISBN 9781402060410. - pp. 403-416 [10.1007/978-1-4020-6042-7_28]
Abstract:
In the present study non-integer order or fractional derivative rheological models are applied to the dynamical analysis of mechanical systems. Their effectiveness in fitting experimental data on wide intervals of frequency by means of a minimum number of parameters is first discussed in comparison with classical integer order derivative models. A technique for evaluating an equivalent damping ratio valid for fractional derivative models is introduced, making it possible to test their ability in reproducing experimentally obtained damping estimates. A numerical procedure for the experimental identification of the parameters of the Fractional Zener rheological model is then presented and applied to a high-density polyethylene (HDPE) beam in axial and flexural vibrations.
Tipologia CRIS:
Capitolo/Saggio
Keywords:
Fractional derivative, Viscoelasticity, Frequency response function, Damping.
Elenco autori:
Catania, Giuseppe; Sorrentino, Silvio
Link alla scheda completa:
Titolo del libro:
Advances in Fractional Calculus: Theoretical Developments and Applications in Physics and Engineering