Magnetorheological semi-active mount system for engines: Prototyping and testing

作者: Qing Liu , Guo-Dong Bai , Zhi-Hao Liu , Xian-Xu ‘Frank’ Bai , Hao Du

DOI: 10.1177/0954407020925724

关键词:

摘要: In order to maximize the controllability of magnetorheological (MR) mount for engines, a novel (MR) mount with an internal bypass (MRM-IB), which provides particular advantages of large dynamic stiffness range, small field-off dynamic stiffness and long available stroke under full vibration frequency range, is proposed and investigated in this paper. The proposed MRM-IB consists of a main rubber spring unit for supporting static load and a MR damping unit for mechanical energy dissipation. The MR damping unit is composed of a piston assembly, a MR fluid chamber and an annular MR fluid channel sandwiched by two concentric cylinders, that is, the inner and outer cylinders. Electromagnetic coil winding is wound on the outside of the inner cylinder and continuous damping/dynamic stiffness of the MRM-IB is tuned by the applied current in the coils. Structural principle of the magnetic circuit of the proposed MRM-IB is validated and analyzed, and the mathematical model of the controllable damping force is then established. In addition, a frequency-based piecewise controller and a fuzzy controller for a specific MR semi-active automotive mount system are designed, and the theoretical simulation and the experimental tests of the system are conducted, compared and analyzed.

参考文章(23)
Saikat Dutta, G. Chakraborty, Performance analysis of nonlinear vibration isolator with magneto-rheological damper Journal of Sound and Vibration. ,vol. 333, pp. 5097- 5114 ,(2014) , 10.1016/J.JSV.2014.05.028
Q H Nguyen, S B Choi, Y S Lee, M S Han, Optimal design of high damping force engine mount featuring MR valve structure with both annular and radial flow paths Smart Materials and Structures. ,vol. 22, pp. 115024- ,(2013) , 10.1088/0964-1726/22/11/115024
T. M. Nguyen, C. Ciocanel, M. H. Elahinia, A Squeeze-Flow Mode Magnetorheological Mount: Design, Modeling, and Experimental Evaluation Journal of Vibration and Acoustics. ,vol. 134, pp. 021013- ,(2012) , 10.1115/1.4005011
H. Mansour, S. Arzanpour, M. F. Golnaraghi, A. M. Parameswaran, Semi-active engine mount design using auxiliary magneto-rheological fluid compliance chamber Vehicle System Dynamics. ,vol. 49, pp. 449- 462 ,(2011) , 10.1080/00423111003596750
Do Xuan Phu, Kruti Shah, Seung-Bok Choi, A new magnetorheological mount featured by changeable damping gaps using a moved-plate valve structure Smart Materials and Structures. ,vol. 23, pp. 125022- ,(2014) , 10.1088/0964-1726/23/12/125022
Jin-Hyeong Yoo, Norman M. Wereley, Design of a High-Efficiency Magnetorheological Valve: Journal of Intelligent Material Systems and Structures. ,vol. 13, pp. 679- 685 ,(2002) , 10.1177/1045389X02013010012
Daniel E. Barber, J. David Carlson, Performance Characteristics of Prototype MR Engine Mounts Containing Glycol MR Fluids Journal of Intelligent Material Systems and Structures. ,vol. 21, pp. 1509- 1516 ,(2010) , 10.1177/1045389X09351957
Quoc Hung Nguyen, Do Xuan Phu, Joon Hee Park, Seung Bok Choi, Ok Hyun Kang, None, Development of High Damping Magneto-Rheological Mount for Ship Engines Applied Mechanics and Materials. pp. 953- 959 ,(2013) , 10.4028/WWW.SCIENTIFIC.NET/AMM.336-338.953
The Nguyen, Mohammad Elahinia, Shuo Wang, Hydraulic hybrid vehicle vibration isolation control with magnetorheological fluid mounts International Journal of Vehicle Design. ,vol. 63, pp. 199- 222 ,(2013) , 10.1504/IJVD.2013.056147
Alireza Farjoud, Mehdi Ahmadian, Nima Mahmoodi, Xinjie Zhang, Michael Craft, Nonlinear modeling and testing of magneto-rheological fluids in low shear rate squeezing flows Smart Materials and Structures. ,vol. 20, pp. 085013- ,(2011) , 10.1088/0964-1726/20/8/085013