@inproceedings{a93de74dc5bc4d8fb67ee0b7895c4168,
title = "New type magnetorheological damper and its application on semi-active control of structural seismic response",
abstract = "Magnetorheological (MR) dampers are new semi-active control devices in which the damping forces are controlled by magnetic field. These dampers are well suited for semi-active control of seismically loaded civil structures. In this study, the performance of a semi-active control system based on newly developed MR fluid damper is studied. A simple parallel plate model is used to investigate the MR damper's behavior. The comparison between the analytical and experimental results verifies the theoretical analysis of the developed MRF damper. A Three-Degree-of-Freedom (3DOF) lumped-parameter model is introduced to represent a model-scale civil structure installed with the new damper. Using this model, semi-active control method such as Continuous Sliding Mode (CSM) controller is simulated. Excellent results are obtained when this strategy is applied to control a model of a seismically excited three-story scaled building. The results clearly demonstrate that the MR damper has the potential for improving the seismic behavior of civil structures.",
keywords = "Continuous sliding mode (CSM), Magnetorheological (MR) damper, Parallel-plate model, Semi-active control",
author = "Qing Sun and Ke Zhang and Jinxiong Zhou and Ling Zhang",
year = "2002",
language = "英语",
isbn = "703010787X",
series = "Process in Safety Science and Technology Part A",
pages = "376--382",
editor = "H. Ping and W. Yajun and L. Shengcai and Q. Xinming and H, Ping and W. Yajun and L. Shengcai and Q. Xinming",
booktitle = "Process in Safety Science and Technology Part A",
note = "Progress in Safety Science and Technology ; Conference date: 10-10-2002 Through 13-10-2002",
}