참고문헌
- Bashtovoi, V.G., Kabachnikov, D.N. and Bossis, G. (2002), "Damping of an elastic beam using an MR suspension in the squeeze mode", J. Intel. Mat. Syst. Str., 13, 515. https://doi.org/10.1106/104538902029559
- Butz, T. and Von Stryk, O. (2002), "Modelling and simulation of electrorheological fluid dampers", Zeitschrift fur angewandte Mathematik und Mechanik, 82(1), 3-20. https://doi.org/10.1002/1521-4001(200201)82:1<3::AID-ZAMM3>3.0.CO;2-O
- Charles, S.W. (2002), The preparation of magnetic fluids, Ferrofluids, Magnetically Controllable Fluids and their Applications, Springer.
- Cutillas, S. and Liu, J. (2003), "Particle dynamics of structure formation and disintegration in a model magnetorheological fluid", Proc. of the Eigth Int. Conf. on Electrorheological Fluids and Magnetorheological Suspensions, Nice, France, July 9-13.
- Demouth, H., Beale, M. and Hagan, M. (2006), Neural Network Toolbox for use with Matlab, User's guide, www.mathworks.com.
- Dyke, S.J., Spencer Jr., B.F., Sain, M.K. and Carlson, J.D. (1996), "Modeling and control of magnetorheological dampers for seismic response reduction", Passive and Active Damping Technologies, 5(5), 565-575.
- Flores, G.A., Sheng, R. and Liu, J. (1999), "Medical Applications of Magnetorheological fluids - a possible new cancer therapy", J. Intel. Mat. Syst. Str., 10, 708.
- Flores, G.A. and Liu, J. (2002), "Embolization of blood vessels as a cancer therapy using magnetorheological fluids", J. Intel. Mat. Syst. Str., 13, 641. https://doi.org/10.1177/1045389X02013010006
- Gamota, D.R. and Filisko, F.E. (1991), "Dynamic mechanical studies of electrorheological materials: moderate frequencies", J. Rheol., 35(3), 399-425. https://doi.org/10.1122/1.550221
- Gavin, H.P. (2001), "Multi-duct ER dampers", J. Intel. Mat. Syst. Str., 12(5), 353-366. https://doi.org/10.1106/8398-U3X9-DHK9-K304
- Jansen, L.M. and Dyke, S.J. (2000), "Semi-Active Control Strategies for MR Dampers: A Comparative Study", J. Eng. Mech. ASCE, 126(8), 795-803. https://doi.org/10.1061/(ASCE)0733-9399(2000)126:8(795)
- Jolly, M., Bender, J.W. and Carlson, D. (1998), Properties and applications of commercial magnetorheological fluids, Lord Corporation, http://www.lord.com.
- Lord Corporation (2007), www.lord.com.
- Oh, J., Roschke, P.N., Lin, P.Y., Carlson, J.D. and Sunakoda, K. (2004), "Experimental behavior and neuro-fuzzy modeling of 30-ton magnetorheological damper", J. Civil Eng. KSCE, 8(2), 213-219.
- Sain, P., Sain, M. and Spencer, B.F. (1997), "Models for hysteresis and application to structural control", Proc. American Control Conf., Albuquerque, N.M., U.S.A.
- Schurter, K.C. and Roschke, P.N. (2000), "Fuzzy modeling of a magnetorheological damper using ANFIS", The 9th IEEE Int. Conf. on Fuzzy Systems, San Antonio, Texas, U.S.A.
- Spencer, Jr, B.F., Dyke, S.J., Sain, M.K. and Carlson, J.D. (1997), "Phenomenological model of a magnetorheological damper", J. Eng. Mech. ASCE, 123(3), 230-238. https://doi.org/10.1061/(ASCE)0733-9399(1997)123:3(230)
- Stanway, R., Sproston, J.L. and Stevens, N.G. (1987), "Non-linear modeling of an Electrorheological vibration damper", J. Electrostat., 20, 167-184. https://doi.org/10.1016/0304-3886(87)90056-8
- Wang, J., Feng, N., Meng, G. and Hahn, E.J. (2006), "Vibration control of rotor by squeeze film damper with magnetorheological fluid", J. Intel. Mat. Syst. Str., 17, 353. https://doi.org/10.1177/1045389X06055623
- Yang, G. (2001), Large-scalemagnetorheological fluid damper for vibration mitigation: modeling, testing and control, Ph.D Dissertation, Department of Civil Engineering and Geological Sciences, University of Notre Dame, Notre Dame, Indiana.
- Yang, G., Spencer, B.F., Carlson, D.J. and Sain, M.K. (2002), "Large-scale MR fluid dampers: modelling and dynamic performance considerations", Eng. Struct., 24, 309-323. https://doi.org/10.1016/S0141-0296(01)00097-9
- Zapateiro, M. and Luo, N. (2006), Magnetorheological fluids: characteristics, preparation and applications to vibration control, Research Report, IIiA06-12-RR, Institute of Informatics and Applications, University of Girona, Girona, Spain.
- Zapateiro, M. and Luo, N. (2006), Magnetorheological dampers for structural control, Research Report, IIiA06-13-RR, Institute of Informatics and Applications, University of Girona, Girona, Spain.
- Zapateiro, M., Taylor, E., Dyke, S.J. and Luo, N. (2007), "Modeling and identification of the hysteretic dynamics of an MR actuator for its application to semiactive control of flexible structures", SPIE 14th Int. Symp. on Smart Structures and Materials & nondestructive evaluation and health monitoring, San Diego, U.S.A.
- Zhang, J. and Roschke, P.N. (1998), "Neural network simulation of magnetorheological damper behavior", Proc. Int. Conf. on Vibration Engrg., Dalian, China, 1998.
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