Numerical Analysis of Inner Flow Field for Disk MRF Brake

Author:

Liu Cheng Ye1,Yi Feng Yan2,Jiang Ke Jun1

Affiliation:

1. Jiangsu Teachers University of Technology

2. Shandong Jiaotong University

Abstract

According to structure of disk MRF brake computational model of inner flow field for MRF was set up at simplified condition when MRF was regarded as Bingham model. Velocity distribution in inner flow field had been analyzed at different brake velocities and magnetic intensity using finite volume method (FVM), and brake torque and power had also been received at the same condition by integral method. Numerical analysis data were compared with theoretical data. Result showed that velocity distribution of inner flow field was not linear at axial direction, and that brake torque of disk MRF brake was constant approximately, and that numerical data and theoretic data were identical and it can provide reference for design.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference11 articles.

1. Jolly M R, Bender J W, Carlson D J. Properties and applications of commercial Magnetorheological fluids[J]. Journal of Intelligent Material Systems and Structures, 2000, 10(11): 5-13.

2. Zheng Jun, Zhang Guanghui, Cao Xingjin. Analysis on the working principle of MRF transmission device[J], Journal of Chongqing University(Natural Science Edition ), 2007, 30(11): 19-22 (in Chinese).

3. Kosuke Nagaya, Akihisa Suda, Hidenari Yoshida, et al. MR fluid viscous coupling and its torque delivery control[J]. Tribology International 40(2007): 89-97.

4. Kevin Molyet, Constantin Ciocanel, Hideki Yamamoto, Nagi Naganathan. Design and performance of a MR transfer Device[C]. 2005 ASME International Mechanical Engineering Congress and Exposition, Florida 2005, November 5-11: 1-7.

5. Zheng Jun, Zhang Guanghui, Cao Xingjin. Flow analysis of magnetorheological fluid in transmission device in steady state[J]. J. Cent. South Univ. (Science and Technology), 2008, 39(1): 149-154(in Chinese).

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