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  1. Journal of Mechanical Science and Technology
  2. Journal of Mechanical Science and Technology : Volume 15
  3. Journal of Mechanical Science and Technology : Volume 15, Issue 11, November 2001
  4. Design of Magneto-Rheological fluid based device
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Journal of Mechanical Science and Technology : Volume 31
Journal of Mechanical Science and Technology : Volume 30
Journal of Mechanical Science and Technology : Volume 29
Journal of Mechanical Science and Technology : Volume 28
Journal of Mechanical Science and Technology : Volume 27
Journal of Mechanical Science and Technology : Volume 26
Journal of Mechanical Science and Technology : Volume 25
Journal of Mechanical Science and Technology : Volume 24
Journal of Mechanical Science and Technology : Volume 23
Journal of Mechanical Science and Technology : Volume 22
Journal of Mechanical Science and Technology : Volume 21
Journal of Mechanical Science and Technology : Volume 20
Journal of Mechanical Science and Technology : Volume 19
Journal of Mechanical Science and Technology : Volume 18
Journal of Mechanical Science and Technology : Volume 17
Journal of Mechanical Science and Technology : Volume 16
Journal of Mechanical Science and Technology : Volume 15
Journal of Mechanical Science and Technology : Volume 15, Issue 12, December 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 11, November 2001
Creep characterization of type 316LN and HT-9 stainless steels by the K-R creep damage model
Adaptive compensation control of vehicle automatic transmissions for smooth shift transients based on intelligent supervisor
Development of thermal error model with minimum number of variables using fuzzy logic strategy
A study on regenerative braking for a parallel hybrid electric vehicle
Formulation method for solid-to-beam transition finite elements
Dynamic analysis of harmonically excited non-linear structure system using harmonic balance method
Design of Magneto-Rheological fluid based device
A study on effects of recirculated exhaust gas upon wear of cylinder liner and piston in diesel engines
Manufacturing and temperature measurements of a sodium heat pipe
Optimization of a 3-D thermally asymmetric rectangular fin
Numerical analysis of ship’s propulsion mechanism of two-stage Weis-Fogh type by discrete vortex method
Performance of a shell-and-tube heat exchanger with spiral baffle plates
A numerical study of flow distribution effect on a parallel flow heat exchanger
Application of the Ggoore Scheme to turbulence control for drag reduction (I) : Improvement of the Goore Scheme
Application of the Goore Scheme to turbulence control for drag reduction (II) : Application to turbulence control
The experimental investigations of recirculated exhaust gas on exhaust emissions in a diesel engine
Vortex ring, shock-vortex interaction, and morphological transformation behind a finite cone
Journal of Mechanical Science and Technology : Volume 15, Issue 10, October 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 9, September 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 8, August 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 7, July 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 5, May 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 4, April 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 3, March 2001
Journal of Mechanical Science and Technology : Volume 15, Issue 1, January 2001
Journal of Mechanical Science and Technology : Volume 14
Journal of Mechanical Science and Technology : Volume 13
Journal of Mechanical Science and Technology : Volume 12
Journal of Mechanical Science and Technology : Volume 11

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Design of Magneto-Rheological fluid based device

Content Provider SpringerLink
Author Kim, Jeong Hoon Lee, Chong Won Jung, Byung Bo Park, Youngjin Cao, Guangzhong
Copyright Year 2001
Abstract The effect of power supply voltage on the performance limits in a laboratory magnetorheological fluid based device was identified by experiments. It suggests that the frequency range of motion for control is limited by the voltage attenuation due to the coil inductance and the maximum power supply voltage set for practical use of an MRF devices. In this work, the magnetic and electrical characteristics of the MRF device are investigated and a design procedure is formulated to achieve the desired performance for a given power supply.
Starting Page 1517
Ending Page 1523
Page Count 7
File Format PDF
ISSN 1738494X
Journal Journal of Mechanical Science and Technology
Volume Number 15
Issue Number 11
Language English
Publisher Korean Society of Mechanical Engineers
Publisher Date 2001-01-01
Publisher Place Seoul
Access Restriction One Nation One Subscription (ONOS)
Subject Keyword Magneto-Rheological Fluid Yield Stress Slew Rate Power Supply Voltage Design Procedure Mechanical Engineering Vibration, Dynamical Systems, Control Industrial and Production Engineering
Content Type Text
Resource Type Article
Subject Mechanics of Materials Mechanical Engineering
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