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Theoretical Analysis and Experimental Study on Breakaway Torque of Large-diameter Magnetic Liquid Seal at Low Temperature 被引量:2

Theoretical Analysis and Experimental Study on Breakaway Torque of Large-diameter Magnetic Liquid Seal at Low Temperature
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摘要 The existing researches of the magnetic liquid rotation seal have been mainly oriented to the seal at normal temperature and the seal with the smaller shaft diameter less than 100 mm. However, the large-diameter magnetic liquid rotation seal at low temperature has not been reported both in theory and in application up to now. A key factor restricting the application of the large-diameter magnetic liquid rotation seal at low temperature is the high breakaway torque. In this paper, the factors that influence the breakaway torque including the number of seal stages, the injected quantity of magnetic liquid and the standing time at normal temperature are studied. Two kinds of magnetic liquid with variable content of large particles are prepared first, and a seal feedthrough with 140 mm shaft diameter is used in the experiments. All experiments are carried out in a low temperature chamber with a temperature range from 200℃ to -100℃. Different numbers of seal stages are tested under the same condition to study the relation between the breakaway torque and the number of seal stages. Variable quantity of magnetic liquid is injected in the seal gap to get the relation curve of the breakaway torque and the injecting quantity of magnetic liquid. In the experiment for studying the relation between the breakaway torque and the standing time at the normal temperature, the seal feedtrough is laid at normal temperature for different period of time before it is put in the low temperature chamber. The experimental results show that the breakaway torque is proportional to the number of seal stages, the injected quantity of magnetic liquid and the standing time at the normal temperature. Meanwhile, the experimental results are analyzed and the torque formula of magnetic liquid rotation seal at low temperature is deduced from the Navier-Stokes equation on the base of the model of magnetic liquid rotation seal. The presented research can make wider application of the magnetic liquid seal in general. And the large-diameter magnetic liquid rotation seal at low temperature designed by using present research results are to be used in some special fields, such as the military field, etc. The existing researches of the magnetic liquid rotation seal have been mainly oriented to the seal at normal temperature and the seal with the smaller shaft diameter less than 100 mm. However, the large-diameter magnetic liquid rotation seal at low temperature has not been reported both in theory and in application up to now. A key factor restricting the application of the large-diameter magnetic liquid rotation seal at low temperature is the high breakaway torque. In this paper, the factors that influence the breakaway torque including the number of seal stages, the injected quantity of magnetic liquid and the standing time at normal temperature are studied. Two kinds of magnetic liquid with variable content of large particles are prepared first, and a seal feedthrough with 140 mm shaft diameter is used in the experiments. All experiments are carried out in a low temperature chamber with a temperature range from 200℃ to -100℃. Different numbers of seal stages are tested under the same condition to study the relation between the breakaway torque and the number of seal stages. Variable quantity of magnetic liquid is injected in the seal gap to get the relation curve of the breakaway torque and the injecting quantity of magnetic liquid. In the experiment for studying the relation between the breakaway torque and the standing time at the normal temperature, the seal feedtrough is laid at normal temperature for different period of time before it is put in the low temperature chamber. The experimental results show that the breakaway torque is proportional to the number of seal stages, the injected quantity of magnetic liquid and the standing time at the normal temperature. Meanwhile, the experimental results are analyzed and the torque formula of magnetic liquid rotation seal at low temperature is deduced from the Navier-Stokes equation on the base of the model of magnetic liquid rotation seal. The presented research can make wider application of the magnetic liquid seal in general. And the large-diameter magnetic liquid rotation seal at low temperature designed by using present research results are to be used in some special fields, such as the military field, etc.
机构地区 School of Mechanical
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2013年第4期695-700,共6页 中国机械工程学报(英文版)
基金 supported by National Natural Science Foundation of China (Grant No. 50875017)
关键词 magnetic liquid breakaway torque low temperature large-diameter magnetic liquid breakaway torque low temperature large-diameter
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  • 1许孙曲.第七届磁性流体国际学术论文综合[J].磁性材料及器件,1996,(2):25-30.
  • 2内山青彦 姜恩永(译).应用磁学[M].天津:天津科技出版社,1983..
  • 3[4]Jibin Zou,Jiming Zou.Design and pressure control of highpressure differential magnetic fluid seals[J].IEEE Transactions on Magnetics,2003,39 (5):2651-2653.
  • 4[5]Gwan-Soo Park,Dong.Hun Kim.Numerical algorithm for analyzing the magnetic fluid seals[J].IEEE Transactions on Magnetics,1994,30 (5):3351-3354.
  • 5[6]K Ozavi,T Fujiwara.An Experimental Study of High-speed Single Stage Magnetic Fluid Seals[J].Journal of Magnetism and Magnetic Materials,1987,65:382-384.
  • 6[7]JXURFESS et al.Sealing Liquids with Magnetic Liquids[J].Journal of Magnetism and Magnetic Materials,1990,85:246-252
  • 7[9]J V Byme.Ferrofluid hydrostatics according to classical and recent theories of the stresses[J].Pro IEE,1977,124(11):1089-1097.
  • 8尾崎浩一.磁流体シヘル技術原理と動向[J].机械设计,1988,32(2).
  • 9许孙曲,磁性材料及器件,1996年,27卷,2期,25页
  • 10李文彬,磁力应用工程,1991年

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