Title of article :
Rheological–dynamical analogy: Prediction of damping parameters of hysteresis damper
Author/Authors :
Dragan D. Mila?inovi?، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2007
Abstract :
This research aims to predict the damping parameters of hysteresis damper based on an analytical rheological–dynamical
(RDA) visco-elasto-plastic solution of one-dimensional longitudinal continuous vibrations of a bar. A visco-elastoplastic
bar or damper is an energy dissipation device. An attempt is made to estimate quantitatively the influence of
material physical parameters of materials on the damping ratio in both the linear visco-elastic analysis and the nonlinear
visco-elasto-plastic analysis of damper subjected to external vibration forces. Two types of damping are considered:
viscous damping in the case of linear analysis, defined as stiffness and/or mass proportional and, in the case of nonlinear
analysis, hysteresis damping caused by inelastic deformations of damper. Owing to the visco-elastic nature of the materials
of the damper and the frequency dependence of the viscous damping ratio n, it is useful to consider separately the situations
arising when n is positive (the system is stable) and when it is negative. A negative damping ratio means that the
complementary solution of the response would not die away (the system is unstable because of factor en Æ x Æ t). In the case
of nonlinear analysis, the force–displacement relation is nonlinear, so it is very difficult to predict the actual damping and
stiffness coefficients, even if the force–displacement characteristic is simply perfect elasto-plastic. Using the RDA method,
which takes into account the rate of release of visco-elasto-plastic energy of the dissipation devices; nonlinear behaviors are
linearized, enabling to obtain the equivalent damping and stiffness coefficients and the effective period for the damper
Keywords :
Equivalent stiffness coefficient , Effective period , RDA analogy , Viscous damping ratio , Equivalent damping coefficient
Journal title :
International Journal of Solids and Structures
Journal title :
International Journal of Solids and Structures