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Loss of Torque on Magnetic Fluid Seals with Rotating-shafts

Journal of Magnetics, Volume 22, Number 2, 30 Jun 2017, Pages 286-290
Jianhui Hu * (Department of Electrical Engineering, Harbin Institute of Technology), Meng Zhao (Department of Electrical Engineering, Harbin Institute of Technology), Lu Wang (Department of Electrical Engineering, Harbin Institute of Technology), Jibin Zou (Department of Electrical Engineering, Harbin Institute of Technology), Yong Li (Department of Electrical Engineering, Harbin Institute of Technology)
Abstract
The effects of loss of torque on magnetic fluid seals with rotating-shafts and the general difficulty of studying magnetic fluid seals are the focus of this work. The mechanism underlying loss of torque on such seals is analyzed using theoretical methods that show that loss of torque can be affected by several factors, including the velocity of the rotating-shaft, the structure of the sealing device, the characteristics of the magnetic field, and the characteristics of the magnetic fluid. In this paper, a model of the loss of torque is established, and the results of finite element analysis and testing and simulations are analyzed. It is concluded that (i) the viscosity of the magnetic fluid increased with the intensity of the magnetic field within a certain range; (ii) when the magnetic fluid was saturated, the increase in loss of torque tended to gradually slow down; and (iii) although the axial active length of the magnetic fluid may decrease with increasing speed of the rotating-shaft, the loss of torque increased because of increasing friction.
Keywords: magnetic field; magnetic fluid; torque; sealing
DOI: https://doi.org/10.4283/JMAG.2017.22.2.286
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