Modular High-Force Seismic Magneto-Rheological Fluid Damper

被引:55
|
作者
Gordaninejad, F. [1 ]
Wang, X. [1 ]
Hitchcock, G. [1 ]
Bangrakulur, K. [1 ]
Ruan, S. [2 ]
Siino, M. [2 ]
机构
[1] Univ Nevada, Dept Mech Engn, Reno, NV 89557 USA
[2] Enidine Inc, Orchard Pk, NY 14127 USA
来源
JOURNAL OF STRUCTURAL ENGINEERING-ASCE | 2010年 / 136卷 / 02期
关键词
OF-THE-ART; MAGNETORHEOLOGICAL DAMPER; STRUCTURAL CONTROL; VIBRATION CONTROL; RESPONSE CONTROL; CONTROL-SYSTEM; PROTECTION; FRICTION;
D O I
10.1061/(ASCE)0733-9445(2010)136:2(135)
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
In this work, a large-scale magneto-rheological fluid (MRF) bypass valve damper for seismic mitigation applications is designed, constructed, and tested. The damper utilizes a simple design, with a modular bypass MRF valve, connected to a passive commercial seismic damper. The modular feature of the new MRF valve provides the flexibility of adding as much force as needed to the damper with minimal modification to an existing passive viscous damper. The performance of the MRF valve and the combined semiactive bypass MRF damper are examined through quasi-static and dynamic tests. It is demonstrated that the proposed modular MRF bypass damper can provide a maximum damping force over 200 kN which meets the high-force requirements of a semiactive seismic damper for large-scale structure vibration control.
引用
收藏
页码:135 / 143
页数:9
相关论文
共 50 条
  • [21] A hysteresis model for magneto-rheological damper
    Yang, SP
    Li, SH
    Wang, XJ
    Gordaninejad, F
    Hitchcock, G
    INTERNATIONAL JOURNAL OF NONLINEAR SCIENCES AND NUMERICAL SIMULATION, 2005, 6 (02) : 139 - 144
  • [22] Response of a magneto-rheological fluid damper subjected to periodic forcing in a high frequency limit
    Litak, Grzegorz
    Borowiec, Marek
    Kasperek, Rafal
    ZAMM-ZEITSCHRIFT FUR ANGEWANDTE MATHEMATIK UND MECHANIK, 2008, 88 (12): : 1000 - 1004
  • [23] Magneto-rheological fluid brake for passive force display
    Zhu, Jing
    Nanjing Li Gong Daxue Xuebao/Journal of Nanjing University of Science and Technology, 2011, 35 (06): : 817 - 821
  • [24] Nonlinear Stiffness of a Magneto-Rheological Damper
    Dalei Guo
    Haiyan Hu
    Nonlinear Dynamics, 2005, 40 : 241 - 249
  • [25] Force characteristics of a modular squeeze mode magneto-rheological element
    Craft, Michael J.
    Ahmadian, Mehdi
    Farjoud, Alireza
    Burke, William C. T.
    Nagode, Clement
    ACTIVE AND PASSIVE SMART STRUCTURES AND INTEGRATED SYSTEMS 2010, PTS 1 AND 2, 2010, 7643
  • [26] Tracking a Reference Damping Force in a Magneto-Rheological Damper for Automotive Applications
    Savaia, Gianluca
    Panzani, Giulio
    Corno, Matteo
    Sinigaglia, Andrea
    Savaresi, Sergio M.
    IFAC PAPERSONLINE, 2020, 53 (02): : 14318 - 14323
  • [27] THE PERFORMANCE STUDY OF MAGNETO-RHEOLOGICAL DAMPER
    Chen, Shumei
    Chen, Xiaomei
    SMASIS2009, VOL 1, 2009, : 375 - 382
  • [28] A novel two-way-controllable magneto-rheological fluid damper
    Aydar, Gokhan
    Wang, Xiaojie
    Gordaninejad, Faramarz
    SMART MATERIALS & STRUCTURES, 2010, 19 (06):
  • [29] Modeling of magneto-rheological fluid damper employing recurrent neural networks
    Liao, CR
    Wang, KL
    Yu, M
    Chen, WM
    PROCEEDINGS OF THE 2005 INTERNATIONAL CONFERENCE ON NEURAL NETWORKS AND BRAIN, VOLS 1-3, 2005, : 616 - 620
  • [30] Active vibration control of rotor system by a magneto-rheological fluid damper
    Zhu, CS
    Jiang, JD
    Robb, DA
    Ewins, DJ
    SMART STRUCTURES AND MATERIALS 2001: DAMPING AND ISOLATION, 2001, 4331 : 121 - 129