Design optimization and performance evaluation of hybrid type magnetorheological damper

被引:0
|
作者
Munyaneza Olivier
Jung Woo Sohn
机构
[1] Kumoh National Institute of Technology,Department of Aeronautics, Mechanical and Electronic Convergence Engineering, Graduate School
[2] Kumoh National Institute of Technology,Department of Mechanical Design Engineering
关键词
Design optimization; Hybrid type damper; Magnetorheological fluid damper; Vehicle model; Vibration suppression;
D O I
暂无
中图分类号
学科分类号
摘要
This work presents the design optimization and numerical investigation results to evaluate the vibration control performance of a novel hybrid type magnetorheological (MR) damper. Since the proposed hybrid type MR damper has both an electromagnet and permanent magnets, it is possible to design a compact-sized damper with an improved damping force. After designing and characteristics analysis of the proposed hybrid type MR damper, optimization of design parameters is carried out to achieve enhanced damping force. The designed hybrid type MR damper is applied on both quarter and full vehicle models to evaluate its performance on suppressing the unwanted sprung mass motions such as heave and pitch motion. Skyhook and linear quadratic regulator (LQR) controllers are designed and incorporated to the vehicle system models to control the current input to the proposed hybrid type MR damper. The input current to this hybrid type damper is reduced while the damping force is enhanced compared with the conventional MR damper. All the numerically simulated results showed that the proposed hybrid type MR damper can improve the ride comfort and road holding capability on bump and random road conditions.
引用
收藏
页码:3549 / 3558
页数:9
相关论文
共 50 条
  • [21] Performance evaluation and optimization of magnetorheological damper with non-magnetic spacer using JAYA and grey wolf optimization
    Gurubasavaraju, T. M.
    Sachidananda, K. B.
    Narasimhamu, K. Lakshmi
    Raghu, K. K.
    INTERNATIONAL JOURNAL OF INTERACTIVE DESIGN AND MANUFACTURING - IJIDEM, 2024, 18 (01): : 555 - 567
  • [22] Electromagnetic Design of a Magnetorheological Damper
    Nam, Yun-Joo
    Park, Myeong-Kwan
    JOURNAL OF INTELLIGENT MATERIAL SYSTEMS AND STRUCTURES, 2009, 20 (02) : 181 - 191
  • [23] Analysis and Design of Magnetorheological Damper
    Huang, Jin
    He, Jianmin
    Lu, Guoping
    MANUFACTURING PROCESSES AND SYSTEMS, PTS 1-2, 2011, 148-149 : 882 - 886
  • [24] Design and performance analysis of a vibration energy harvesting magnetorheological damper
    Hu, Guoliang
    Lei, Weizheng
    Xi, Xingsheng
    Xu, Tiannan
    Tian, Tongfei
    JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS, 2024, 612
  • [25] Design analysis of a magnetorheological damper
    He, JM
    Huang, J
    Fu, LJ
    ICMIT 2005: MECHATRONICS, MEMS, AND SMART MATERIALS, 2005, 6040
  • [26] Research on a Magnetorheological Fluid Damper Design and Its Mechanics Performance
    Lin, Yuda
    Song, Rong
    Lyu, Yueling
    2022 INTERNATIONAL CONFERENCE ON ADVANCED ROBOTICS AND MECHATRONICS (ICARM 2022), 2022, : 169 - 173
  • [27] Design, performance test and analysis on magnetorheological damper for earthquake mitigation
    Xu, Zhao-Dong
    Sha, Ling-Feng
    Zhang, Xiang-Cheng
    Ye, Han-Hu
    STRUCTURAL CONTROL & HEALTH MONITORING, 2013, 20 (06): : 956 - 970
  • [28] Performance evaluation of semi-active control with magnetorheological damper
    Yang, Shaopu
    Pan, Cunzhi
    Guo, Shuqi
    Proceedings of the ASME International Design Engineering Technical Conferences and Computers and Information in Engineering Conference, Vol 1, Pts A-C, 2005, : 2263 - 2268
  • [29] Design and optimization of a magnetorheological damper based on B-spline curves
    Liu, Gaoyu
    Gao, Fei
    Liao, Wei-Hsin
    MECHANICAL SYSTEMS AND SIGNAL PROCESSING, 2022, 178
  • [30] Design of Magnetorheological Damper Based on Magnetorheological Composite Materials
    Dong X.
    Wang K.
    Li P.
    Xinan Jiaotong Daxue Xuebao/Journal of Southwest Jiaotong University, 2023, 58 (04): : 896 - 902