Study on the Development of Passive MR Damper with Displacement-Dependent Damping Characteristics

Author:

MURAKAMI Takahiro1,SAKAI Michiya1,NAKANO Masami2

Affiliation:

1. Central Research Institute of Electric Power Industry

2. Institute of Fluid Science, Tohoku University

Publisher

Japan Society of Mechanical Engineers

Subject

Fluid Flow and Transfer Processes,Mechanical Engineering

Reference9 articles.

1. (1) Carlson, J.D. and Jolly, M.R., MR fluid foam and elastomer devices, Mechatronics, Vol. 10, (2000), pp.555-569.

2. (2) Nakano, M., MR Fluid Actuator, Next-Generation Actuator Materials and Devices, (2006), pp.257-268.

3. (3) Carlson, J.D., Innovative Devices That Enable Semi-Active Control, Proc. 3rd World Conf. on Structural Control, Como, Italy, April 2002, (2003), pp. 227-236.

4. (4) Yang, G., Large-Scale Magnetorheological Fluid Damper for Vibration, Mitigation: Modeling: Testing and Control, Ph. D. Dissertation, Notre Dame University, (2001).

5. (5) Sodeyama, H., Suzuki, K., Iwata, N. and Sunakoda, K., A Study on Design Method of the Bypass Type MR Damper, Journal of the Japan Society of Mechanical Engineers, Vol. 70, No. 691 (2004), pp.625-632.

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