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Transient response of vibration systems with viscous-hysteretic mixed damping using Hilbert transform and effective eigenvalues

Authors
Bae, S. H.Jeong, W. B.Cho, J. R.Lee, S. H.
Issue Date
Sep-2017
Publisher
TECHNO-PRESS
Keywords
viscous-hysteretic mixed damping (VHMD); transient response; unit impulse response; effective eigenvalues; Hilbert transform; state space
Citation
SMART STRUCTURES AND SYSTEMS, v.20, no.3, pp.263 - 272
Journal Title
SMART STRUCTURES AND SYSTEMS
Volume
20
Number
3
Start Page
263
End Page
272
URI
https://scholarworks.bwise.kr/hongik/handle/2020.sw.hongik/5352
DOI
10.12989/sss.2017.20.3.263
ISSN
1738-1584
Abstract
This paper presents the time response of a mixed vibration system with the viscous damping and the hysteretic damping. There are two ways to derive the time response of such a vibration system. One is an analytical method, using the contour integral of complex functions to compute the inverse Fourier transforms. The other is an approximate method in which the analytic functions derived by Hilbert transform are expressed in the state space representation, and only the effective eigenvalues are used to efficiently compute the transient response. The unit impulse responses of the two methods are compared and the change in the damping properties which depend on the viscous and hysteretic damping values is investigated. The results showed that the damping properties of a mixed damping vibration system do not present themselves as a linear combination of damping properties.
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