Mechanical Model Parameters for Viscoelastic Dampers
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VIEW THE REPLYPublication: Journal of Engineering Mechanics
Volume 135, Issue 6
Abstract
Models of varying complexities are being used to represent the frequency-dependent dynamic force deformation characteristics of viscoelastic dampers. More sophisticated models with real or complex fractional derivatives can definitely capture the frequency-dependent properties better. However, since these advanced models add complexity in the analysis of structures, the use of two classical models—a Kelvin chain and a Maxwell ladder—consisting of usual dashpots and springs is suggested. In this technical note, we provide explicit steps and necessary formulas to calculate the parameters of these two proposed models to provide desired frequency-dependent characteristics represented by the storage and loss moduli.
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Acknowledgments
This research is sponsored by the National Science Foundation through Grant Nos. NSFCMS-9987469 and NSFCMS0201475. This support is gratefully acknowledged.
References
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© 2009 ASCE.
History
Received: Sep 19, 2006
Accepted: Nov 14, 2008
Published online: May 15, 2009
Published in print: Jun 2009
Notes
Note. Associate Editor: Andrew W. Smyth
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