期刊文献+

Influence of Magnetic Reluctances of Magnetic Elements on Servo Valve Torque Motors 被引量:11

Influence of Magnetic Reluctances of Magnetic Elements on Servo Valve Torque Motors
下载PDF
导出
摘要 The current research of electro-hydraulic servo valves mainly focuses on the vibration, pressure oscillating and source of noise. Unfortunately, literatures relating to the study of the influence of the magnetic reluctances of the magnetic elements are rarely available. This paper aims to analyze the influence of the magnetic reluctances of the magnetic elements on torque motor. Considering these magnetic reluctances ignored in previous literatures, a new mathematical model of servo valve torque motor is developed and proposed based on the fundamental laws of electromagnetism. By using this new mathematical model and the previous models, electromagnetic torque constant and magnetic spring stiffness are evaluated for a given set of torque motor parameters. A computer simulation by using AMESim software is also performed for the same set of torque motor parameters to verify the proposed model. The theoretical results of electromagnetic torque constant and magnetic spring stiffness evaluated by the proposed model render closer agreement with the simulation results than those evaluated by the previous models. In addition, an experimental measurement of the magnetic flux densities in the air-gaps is carried out by using SFL218 servo valve torque motor. Compared with the theoretical results of the magnetic flux densities in the air-gaps evaluated by the previous models, the theoretical results evaluated by the proposed model also show better agreement with the experimental data. The proposed model shows the influence of the magnetic reluctances of the magnetic elements on the servo valve torque motor, and offers modified and analytical expressions to electromagnetic torque constant and magnetic spring stiffness. These modified and analytical expressions could provide guidance more accurately for a linear control design approach and sensitivity analysis on electro-hydraulic servo valves than the previous expressions. The current research of electro-hydraulic servo valves mainly focuses on the vibration, pressure oscillating and source of noise. Unfortunately, literatures relating to the study of the influence of the magnetic reluctances of the magnetic elements are rarely available. This paper aims to analyze the influence of the magnetic reluctances of the magnetic elements on torque motor. Considering these magnetic reluctances ignored in previous literatures, a new mathematical model of servo valve torque motor is developed and proposed based on the fundamental laws of electromagnetism. By using this new mathematical model and the previous models, electromagnetic torque constant and magnetic spring stiffness are evaluated for a given set of torque motor parameters. A computer simulation by using AMESim software is also performed for the same set of torque motor parameters to verify the proposed model. The theoretical results of electromagnetic torque constant and magnetic spring stiffness evaluated by the proposed model render closer agreement with the simulation results than those evaluated by the previous models. In addition, an experimental measurement of the magnetic flux densities in the air-gaps is carried out by using SFL218 servo valve torque motor. Compared with the theoretical results of the magnetic flux densities in the air-gaps evaluated by the previous models, the theoretical results evaluated by the proposed model also show better agreement with the experimental data. The proposed model shows the influence of the magnetic reluctances of the magnetic elements on the servo valve torque motor, and offers modified and analytical expressions to electromagnetic torque constant and magnetic spring stiffness. These modified and analytical expressions could provide guidance more accurately for a linear control design approach and sensitivity analysis on electro-hydraulic servo valves than the previous expressions.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第1期136-144,共9页 中国机械工程学报(英文版)
基金 Supported by National Natural Science Foundation of China(Grant No.50975055)
关键词 servo valve torque motor magnetic reluctance electromagnetic torque constant magnetic spring stiffness servo valve torque motor, magnetic reluctance, electromagnetic torque constant, magnetic spring stiffness
  • 相关文献

参考文献1

二级参考文献12

  • 1ROCKWELL D, NAUDASCHER E. Self-sustained oscillations of impinging free shear layers[J]. Ann. Rev. Fluid Mech., 1979(11).. 67-94.
  • 2KAILASH K, PERRY Y L. Passification of an electrohydraulic two-stage pressure control servo-valve[C]//Proceedings of the American Control Conference, Anchorage, AK, May 8-10, 2002: 735-740.
  • 3DECAl L, HAIPING X, XINZHI H, et al. Study on the magnetic fluid sealing for dry Roots pump[J]. Journal of Magnetism and Magnetic Materials, 2005(289): 419-422.
  • 4SHIXIN C, QIDE Z, HOWCHING C, et al. Some design and prototyping issues on a 20000rpm HDD spindle motor with a ferro-fluid bearing system[J]. IEEE Transactions on Magnetics, 2001, 37(2): 805-809.
  • 5ECKART U, GUNTER S, NAYIM B, et al. Application of magnetic fluids in tribotechnical systems[J]. Journal of Magnetism and Magnetic Materials, 2002(252): 336-340.
  • 6SONGJING L, DAN J, BENZHOU X, et al. 3-D magnetic field analysis of hydraulic servo valve torque motor with magnetic fluid[C]//IEEE International Conference of Electrical Machines and Systems August 21-23, 2005, Nanjing, China, 2005: 2 447-2 450.
  • 7ARNIM N, THOMAS S, HANNS-DIETRICH S, et al. Ferrofluids in electric motors--a numerical process model[J]. IEEE Transactions on Magnetics, 2002, 38(2): 1 177-1 180.
  • 8VIKTOR P, LUTZ T. Instability of magnetic fluid in a narrow gap between plates[J]. Journal of Magnetism and Magnetic Materials, 2005(289): 379-381.
  • 9GWAN S P, SANG H P. Determination of the curvature of the magnetic fluid under the external forces[J]. IEEE Transactions on Magnetics, 2002, 38(2): 957-960.
  • 10BO Z, AKARI N. Dynamics of magnetic fluid support grinding of Si3N4 ceramic balls for ultraprecision bearings and its importance in spherical surface generation[J]. Precision Engineering, 2003(27): 1-8.

共引文献23

同被引文献86

引证文献11

二级引证文献34

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部