期刊文献+

纳米磁性液体零泄漏密封保护器的实验研究

Experimental Study on Zero Leakage Sealing Protector of Nano-Magnetic Fluids
下载PDF
导出
摘要 在某些特殊密封场合下,阀的密封优良与否具有重要意义,零泄漏就显得尤为重要。利用电磁式磁性液体零泄漏保护器搭建实验平台,记录了不同性状磁性液体在不同励磁电流下的耐压值,对比这些曲线之间的差异。实验表明:磁性液体的耐压值与磁感应强度成正比,在同等磁感应强度下,除去在点240 mA附近之外,耐压值的高低顺序依次为:样本1、样本2、样本3。根据电磁式保护器各磁场下的耐压情况,设计出三种不同尺寸的永磁环,研制出永磁式磁性液体密封保护器,扩大了保护器适应范围,提高了保护器的安全性能。总结出相关结论,对磁性液体密封中磁性液体的选取提供指导。 In some special seal situations,whether the seal of the valve is better or not is important,and the zero leakage is particularly important.The experimental platform was built with the zero leakage protector of electromagnetic nano-magnetic fluid,the pressure-resisting capabilities of different magnetic fluids were recorded in different excitation currents,and the differences between theses curves were compared.The experiment shows that the pressure-resisting values vary directly as the magnetic density.At the same magnetic density except the point of 240 mA,the order from high to low of the pressure-resisting values is as follows: sample 1,sample 2,sample 3.By the pressure-resisting capabilities of the electromagnetic protector under different magnetic fields,the three permanent magnet rings with different sizes were designed,a protector of nano-magnetic fluid with permanent magnetic was developed,enlarging the range of application and improving the safety.The relevant conclusions are summed up to guide the choice of the right magnetic fluid for the magnetic fluid seal.
出处 《微纳电子技术》 CAS 北大核心 2012年第9期619-623,共5页 Micronanoelectronic Technology
基金 国家自然科学基金资助项目(51077006)
关键词 磁性液体 纳米颗粒 密封 零泄漏 永磁 magnetic fluid nanoparticle seal zero leakage permanent magnet
  • 相关文献

参考文献9

  • 1MITAMURA Y,TAKAHASHI S,AMARI S,et al.A mag-netic fluid seal for rotary blood pumps:long-term performancein liquid[C]//Proceedings of the 12th International Confe-rence on Magnetic Fluids.Sendai,Japan,2010:33-44.
  • 2LI D C,HE X Z.The design and experimental study on thecomposite seals of magnetic fluid seal[C]//Proceedings ofthe 12th International Conference on Magnetic Fluids.Sendai,Japan,2010:147-148.
  • 3LI D C,RUAN C,ZHANG X M.Study on magnetic fluid staticseal of large gap[C]//Proceedings of the 12thInternational Con-ference on Magnetic Fluids.Sendai,Japan,2010:150-151.
  • 4何新智,李德才,孙明礼,崔展鹏,郝瑞参.大直径法兰磁性液体静密封的实验研究[J].真空科学与技术学报,2008,28(2):179-181. 被引量:9
  • 5李学慧,陈而宾,安宏,张萍,刘军.氮化铁磁性流体密封安全阀的研究[J].润滑与密封,2002,27(5):63-64. 被引量:2
  • 6李学慧,陆鸿钧,刘志升.纳米磁性液体零泄漏永磁密封保护器:中国,CN100516608C[P].2009-07-22.
  • 7ROSENSWEIG R E.Ferrohydrodynamics[M].New York:Dover Publications,2002:54-61,142-146.
  • 8陈方誉,樊玉光,王媛.磁流体密封中黏性损耗对密封性能的影响[J].润滑与密封,2010,35(7):65-67. 被引量:5
  • 9吴凤义,张茂润,周红梅.旋转轴磁流体静密封承压能力的理论研究[J].安徽理工大学学报(自然科学版),2007,27(2):49-52. 被引量:3

二级参考文献21

  • 1李广学,张茂润.硅油基复合磁流体稳定性的影响因素[J].东南大学学报(自然科学版),2005,35(4):619-623. 被引量:6
  • 2胡国祥.磁流体润滑滑动轴承承载能力计算与分析[J].润滑与密封,1996,21(5):12-15. 被引量:5
  • 3孙明礼,李德才,何新智,郝瑞参.磁流体密封的磁场数值分析及优化设计[J].真空科学与技术学报,2007,27(3):269-272. 被引量:17
  • 4[1]何新智.大直径法兰磁性液体静密封的研究.[D]北京交通大学硕士毕业论文,2005:1-6
  • 5[2]Fertman V E.Heat Dissipation in High Speed Magnetic Fluid Shaft seal[J].IEEE Transactions on Magnetics,1979,16(2):352-357
  • 6[4]李德才.磁性液体密封的机理及实验研究[D].北京航空航天大学硕士毕业论文,1996:196-198
  • 7[6]王常有.往复轴磁性液体密封机理及实验研究[D].北方交通大学硕士论文,1999:61-69
  • 8Ravaud R,Lemarquand G,Lemarquand V.Mechanical properties of ferrofluid applications:Centering effect and capacity of a seal[J].Tribology International,2010,43:76-82.
  • 9Ravaud R,Lemarquand G,Lemarquand V,et al.The Three Exact Components of The Magnetic Field Created by a Radially Magnetized Tile Permanent Magnet[C].Progress in Electromagnetics Research,PIER 88,2008:307-319.
  • 10李德才.磁性液体理论及应用[M].北京:科学出版社,2005:8-10.

共引文献15

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