A Novel Design of Rotary MR Damper
ID:9 View Protection:ATTENDEE Updated Time:2023-06-05 23:00:04 Hits:1130 Poster Presentation

Start Time:2023-06-10 12:36(Asia/Shanghai)

Duration:1min

Session:E Poster » EPoster

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Abstract
In this work, a novel design for a rotary magnetorheological (MR) damper is proposed, which can provide improved damping performance compared to traditional MR damper designs. The proposed damper is based on a hybrid concept that combines both flow and shear damping modes, allowing for increased damping forces and reliable control over the damping characteristics compared to the MR brakes and clutches. To evaluate the performance of the proposed damper, computational simulations are conducted using a mathematical model that is developed based on the flat-plate flow model of MR fluid. The simulation and test results demonstrate that the proposed design can provide significantly improved damping performance. Both torque-angle and damping force-stroke characteristics are evaluated based on the simulation and test. This study suggests that the proposed rotary MR damper could be a promising solution for various applications that require effective vibration control, such as vehicles, buildings, bridges, and machinery.
Keywords
MR damper,rotary (rotational) damper,magnetorheological (MR) fluid
Speaker
Bo-Gyu Kim
Ph.D. course Inha University

Submission Author
Byung-Hyuk Kang Inha University
Bo-Gyu Kim Inha University
Seung-Bok Choi The State University of New York, Korea (SUNY Korea)
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Important Date
  • Conference Date

    Jun 09

    2023

    to

    Jun 12

    2023

  • Mar 15 2023

    Abstract Notification of Acceptance

  • Mar 31 2023

    Abstract Submission Deadline

  • Jun 12 2023

    Registration deadline

  • Sep 20 2023

    Draft paper submission deadline

Sponsored By
Chongqing University
University of Science and Technology of China
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