nonlinear viscous damper
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2020 ◽  
Vol 15 ◽  
pp. 43 ◽  
Author(s):  
M.E. Semenov ◽  
Andrey M. Solovyov ◽  
Peter A. Meleshenko ◽  
Olga O. Reshetova

This paper is dedicated to comparative analysis of nonlinear damping in the oscillating systems. More specifically, we present the particular results for linear and nonlinear viscous dampers, fractional damper, as well as for the hysteretic damper in linear and nonlinear (Duffing-like) oscillating systems. We consider a constructive mathematical model of the damper with hysteretic properties on the basis of the Ishlinskii-Prandtl model. Numerical results for the observable characteristics, such as the force transmission function and the “force-displacement” transmission function are obtained and analyzed for both cases of the periodic affection, as well as for the impulse affection (in the form of δ-function). A comparison of an efficiency (in terms of the corresponding transmission functions) of the nonlinear viscous damper and the hysteretic damper is also presented and discussed.


2012 ◽  
Vol 220-223 ◽  
pp. 1934-1938
Author(s):  
Jin Hai Li ◽  
Song Lin Zhang

In order to satisfy the needs in engineering practice,a new type of nonlinear viscous damper with conical valves is developed. There is a through hole and two valves in the piston of the damper. When the damper work, the fluid flows throw the hole and the regulators, then the energy is consumed. The regulators open because of the pressure difference and adjust their sizes to control the damping force to get just the effect we wanted.


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