期刊文献+

Study of Magnetic Force Distribution for Electromagnetic V-shape Bending Forming of Small Size Flat Sheet

Study of Magnetic Force Distribution for Electromagnetic V-shape Bending Forming of Small Size Flat Sheet
下载PDF
导出
摘要 Electromagnetic V-shape bending of small size sheet blank is investigated numerically and experimentally. Three-dimensional electromagnetic field models are established to calculate the magnetic force distribution on the sheet by software ANSYS / EMAG. Series of electromagnetic V-shape bending forming experiments are presented,in which small size uniform pressure coil and big size round flat spiral coil are used. The results show that small size uniform pressure coil is not suitable for electromagnetic forming of small size flat sheet,and the coil is susceptible to failure such as bulging,ablation and cracking. When the plane dimension of round flat spiral coil is bigger than sheet blank sizes,the induced current crowding effect will be resulted which seriously influence the magnetic force distribution on the sheet. In this case,magnetic force distribution can be adjusted through the change of the relative position between coil and sheet,the desired deformation can be obtained finally. Therefore,big size round flat spiral coil can be well applied to electromagnetic V-shape bending forming of small size flat sheet. Electromagnetic V-shape bending of small size sheet blank is investigated numerically and experimentally. Three-dimensional electromagnetic field models are established to calculate the magnetic force distribution on the sheet by software ANSYS/EMAG. Series of electromagnetic V-shape bending forming experiments are presented, in which small size uniform pressure coil and big size round flat spiral coil are used. The results show that small size uniform pressure coil is not suitable for electromagnetic forming of small size flat sheet, and the coil is susceptible to failure such as bulging, ablation and cracking. When the plane dimension of round flat spiral coil is bigger than sheet blank sizes, the induced current crowding effect will be resulted which seriously influence the magnetic force distribution on the sheet. In this case, magnetic force distribution can be adjusted through the change of the relative position between coil and sheet, the desired deformation can be obtained finally. Therefore, big size round flat spiral coil can be well applied to electromagnetic V-shape bendin~ formin~ of small size flat sheet_
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2014年第1期25-31,共7页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the National Basic Research Program of China(Grant No.2011CB012800 and 2011CB012804)
关键词 Electromagnetic forming Small size sheet blank Induced current crowding effect Magnetic force distribution Electromagnetic forming Small size sheet blank Induced current crowding effect Magnetic forcedistribution
  • 相关文献

参考文献2

二级参考文献17

  • 1欧阳伟,黄尚宇.电磁成形技术的研究与应用[J].塑性工程学报,2005,12(3):35-40. 被引量:15
  • 2韩飞,莫健华,黄树槐.电磁成形技术理论与应用的研究进展[J].锻压技术,2006,31(6):4-8. 被引量:11
  • 3宋福明,塑性工程学报,1995年,2卷,3期,31页
  • 4雷银照,轴对称线圈磁场计算,1991年,106页
  • 5张守彬,博士学位论文,1990年,26页
  • 6SETH Mala, VOHNOUT V J, DAEHN G S. Formability ofSteel Sheet in High Velocity Impact[ J ]. Journal of Mate- rial Processing Technology,2005,168 : 390-400.
  • 7KLEINER M, BEERWALD C, HOMBERG W. Analysis of Process Parameters and Forming Mechanisms within the Electromagnetic Forming Process[ J ]. CIRP Annals-Man- ufacturing Technology ,2005,54( 1 ) :225-228.
  • 8AL-HASSANI S T S. Magnetic Pressure Distributions in Sheet Metal Forming. Electrical methods of machining, forming and coating [ J ]. Institute of Electrical Engineers Conference, 1975 ( 133 ) : 1 - 10.
  • 9LI Ji,CHENG Gary J. Muhiphysics Simulation on Electro- magnetic Peening of Predrilled Holes [ J ]. International Journal of Mechanical Sciences. 2009.51 : 825- 836.
  • 10XU W,LIU X S,YANG J G,et al. Meshing and Choice of Evaluating Parameters of Results in Simulation of Electro- magnetic Force for Forming of Sheet Metal[ J]. Journal of Materials Processing Technology,2009,209:3320-3324.

共引文献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