[1] MA J Z, HE J M, HUANG J. Analysis on transmission properties of a cylindrical magnetorheological clutch[J]. Journal of Chongqing Institute of Technology (Natural Science), 2009(3):34-38. (in Chinese)
[2] LI J Q, ZANG X ZH, ZHAO J. Optimization design and mechanic characteristic experiment of the rotary magnetorheological damper[J]. Journal of Mechanical Engineering, 2010,46(5):177-182. (in Chinese)
[3] LI ZH H, LIN Y, ZHU F Y, et al.. Optimization design of structure and magnetic circuit for drum-type magnetorheo jogical brake[J]. Journal of Engineering Design, 2009,16(4):261-265. (in Chinese)
[7] WANG H Y, ZHENG H Q, LI Y X. Mechanical behavior of magnetorheological fluid under compression mode[J]. Chinese Journal of Scientific Instrument, 2009,30(4):848-851. (in chinese)
[8] MAZLAN S A, EKREEM N B, OLABI A G. An investigation of the behaviour of magnetorheological fluids in compression mode[J]. Journal of Materials Processing Technology, 2008,201(1-3):780-785.
[9] WANG J, FENG N, MENG G, et al.. Vibration control of rotor by squeeze film damper with magnetorheological fluid[J]. Journal of Intelligent Material Systems and Srtuctures, 2006,17:353-357.
[10] CARMIGNANI C, FORTE P, RUSTIGHI E. Design of a novel magneto-rheological squeeze-film damper[J]. Smart Material and Structure, 2006,15:164-170.
[11] TAO R. Super-strong magnetorheological fluids[J]. Journal of Physics: Condensed Matter, 2001,13:979-999.
[12] GINDER J M. Behavior of magnetorheological fluids[J]. MRS Bulletin, 1998,23(8):26-29.
[13] WINSLOW W M. Induced fibrilation of suspensions[J]. Journal of Applied Physics, 1949,20:1137-1140.
[14] WANG Y R, MEN S Q, et al.. The interaction between two spheres in silicone oil under an electric field[J]. International Journal of Modern Physics B, 1999,13:1767-1774.
[15] TAO R. Structure and dynamics of bipolar fluids under strong shear[J]. Chemical Engineering Science, 2006,21:2186-2190.