Prediction of the Ability of a Viscous Fluid Damper with Respect to Change of the Size of the Damper
Hwa-Yong Park, Jong-Min Yun, Seong-Hwan Yoo, Chang-Yeol Kim, Jae-Eung Lee
Abstract
Open-access reader
Hwa-Yong Park, Jong-Min Yun, Seong-Hwan Yoo, Chang-Yeol Kim, Jae-Eung Lee
Abstract
Open-access reader
To reduce the vibration in industrial settings, the viscous fluid dampers have been widely used. Since the damper shows a viscoelastic behavior, many methods to predict the behavior have been investigated. But the methods did not consider a change of damper size that is important factor for practical design engineer. In this study, to predict a change of damper ability with respect to a change of damper size, the dynamic experiment were conducted with fixed aspect ratio and gap. The damping coefficient at zero frequency was computed through theoretical and experiment approach in order to fit the experimental results using fractional derivative Maxwell model.
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To reduce the vibration in industrial settings, the viscous fluid dampers have been widely used. Since the damper shows a viscoelastic behavior, many methods to predict the behavior have been investigated. But the methods did not consider a change of damper size that is important factor for practical design engineer. In this study, to predict a change of damper ability with respect to a change of damper size, the dynamic experiment were conducted with fixed aspect ratio and gap. The damping coefficient at zero frequency was computed through theoretical and experiment approach in order to fit the experimental results using fractional derivative Maxwell model.
Key concepts: Damper, Vibration, Viscoelasticity, Damping ratio, Damping torque, Structural engineering, Control theory (sociology), Engineering