Experimental analysis of the dynamic performance of magneto-rheological dampers under impact loads

被引:0
|
作者
School of Mechanical Engineering, Nanjing University of Science and Technology, Nanjing 210094, China [1 ]
机构
来源
Binggong Xuebao | 2008年 / 5卷 / 532-536期
关键词
Dynamics - Least squares approximations - Mechanisms - Nonlinear equations;
D O I
暂无
中图分类号
学科分类号
摘要
Since magneto-rheological (MR) dampers applied to gun recoil mechanisms experience impact loads and high velocities, the impact test for the special designed long-stroke MR damper was done, and the dynamic performance of the MR damper was examined. The dynamic performance mo-del of the MR damper under impact load was proposed by fitting the experimental data with nonlinear least square method and on the basis of the steady flow equations for parallel plates based on nonlinear Herschel-Burkley constitutive performance of the MR fluid. The controllability of the damping force of MR dampers used for recoil mechanisms was further analyzed with the above model. The results indicate that it's feasible that the ideal recoil dynamic performance can be realized by the controllability of the damping force of MR dampers for using MR dampers on recoil mechanisms.
引用
收藏
页码:532 / 536
相关论文
共 50 条
  • [21] Heat transfer from magneto-rheological fluid dampers
    Dogruoz, MB
    Gordaninejad, F
    Wang, EL
    Stipanovich, AJ
    SMART STRUCTURES AND MATERIALS 2000: SMART SYSTEMS FOR BRIDGES, STRUCTURES, AND HIGHWAYS, 2000, 3988 : 84 - 93
  • [22] Magneto-rheological fluid dampers modeling: Numerical and experimentalac
    Yasrebi, N.
    Ghazavi, A.
    Mashhadi, M. M.
    Yousefi-Koma, A.
    PROCEEDINGS OF THE 17TH IASTED INTERNATIONAL CONFERENCE ON MODELLING AND SIMULATION, 2006, : 321 - +
  • [23] Control of bridges using magneto-rheological fluid dampers
    Hansen, BC
    Gordaninejad, F
    Saiidi, M
    Chang, FK
    STRUCTURAL HEALT H MONITORING: CURRENT STATUS AND PERSPECTIVES, 1997, : 81 - 90
  • [24] Modeling, Simulation, and Validation of Magneto-Rheological Dampers with LabVIEW
    Olaru, Adrian
    Masehian, Ellips
    Olaru, Serban
    Mihai, Niculae
    PROCEEDINGS OF 2020 17TH INTERNATIONAL BHURBAN CONFERENCE ON APPLIED SCIENCES AND TECHNOLOGY (IBCAST), 2020, : 362 - 369
  • [25] Heating of magneto-rheological fluid dampers: A theoretical study
    Breese, DG
    Gordaninejad, F
    SMART STRUCTURES AND MATERIALS 1999: SMART SYSTEMS FOR BRIDGES, STRUCTURES AND HIGHWAYS, 1999, 3671 : 2 - 10
  • [26] Earthquake Disaster Mitigation by using Magneto-rheological dampers
    Guo Ying-Qing
    Xu Zhao-Dong
    DISASTER ADVANCES, 2013, 6 (01): : 18 - 22
  • [27] An experimental artificial-neural-network-based modeling of magneto-rheological fluid dampers
    Tudon-Martinez, J. C.
    Lozoya-Santos, J. J.
    Morales-Menendez, R.
    Ramirez-Mendoza, R. A.
    SMART MATERIALS AND STRUCTURES, 2012, 21 (08)
  • [28] Simulation and Analysis of Passive vs. Magneto-Rheological Suspension and Seat Dampers
    Eshkabilov, Sulaymon
    Jumaniyazov, Hamdam
    Riskaliev, Davron
    ADVANCES IN DESIGN, SIMULATION AND MANUFACTURING, 2019, : 269 - 279
  • [29] Design and experimental evaluation of steel MRF with magneto-rheological dampers for seismic hazard mitigation
    Chen, Cheng
    Ricles, James M.
    Sause, Richard
    Karavasilis, Theodore L.
    Chae, Yunbyeong
    STESSA 2009 - BEHAVIOUR OF STEEL STRUCTURES IN SEISMIC AREAS, 2009, : 767 - 773
  • [30] Analysis and Control for Chaos motion of Vehicle Suspension System with Magneto-rheological Dampers
    Zhang Hailong
    Min Fuhong
    Wang Enrong
    PROCEEDINGS OF THE 31ST CHINESE CONTROL CONFERENCE, 2012, : 425 - 428