期刊文献+

串联增强型电磁轨道炮螺栓预紧封装性能分析 被引量:4

The Encapsulation Performance Analysis of Series Enhanced Electromagnetic Railgun with Bolt Pre-tightening
下载PDF
导出
摘要 为了研究螺栓连接预紧方式的串联增强型轨道炮的身管封装性能,从电磁场的角度出发,计算了电磁轨道炮发射时导轨中的电磁力,进而得到了身管应力、应变和位移量。建立三维串联增强型电磁轨道炮离散预紧身管模型,计算了在一种斜坡电流激励条件下导轨的应力、应变和位移量的变化规律,以及身管封装部件应力、应变及位移的变化规律。从计算结果看出,在螺栓预紧条件下,导轨及身管处于一定初始位移及应力、应变下,随着电流的逐渐增大和作用时间增大,各参量也逐渐增大,且呈现明显的波动状,导轨的位移在螺栓位置有明显的下降趋势。身管部件的最大位移量远小于导轨的位移量,保证了与导轨的接触,也在一定程度上控制了导轨的最大位移量,对身管的封装性能有积极的作用。 For the purpose of studying the encapsulation performance of series enhanced electromagnetic railgun with bolt pre-tightening,calculated was the electromagnetic force of the rails from the perspective of electromagnetic field with the stress,strain and displacement of the gun barrel achieved.Then a three dimensional series enhanced railgun tube model was built,and a ramp current was loaded to calculate the changing law of rail stress,strain and displacement. And these parametrical varying patterns of the barrel units were also obtained. As the calculation results show,under the condition of the blot pre-tightening,the rails and the barrel units are under the impact of certain initial displacement,stress and strain. With the gradual increase of the current and duration,the parameters of rail and barrel units were increased gradually with an obvious fluctuation pattern. The rail displacement in the bolt position shows obvious drop trend. And the displacement of barrel units was smaller than that of the rail,so the rail and the barrel unit can have good contact condition. This phenomenon demonstrates that the use of discrete seal barrel with bolt pre-tightening can control the maximum displacement of the rail to a certain extent,which works well for the barrel encapsulation performance.
出处 《火炮发射与控制学报》 北大核心 2016年第1期1-6,共6页 Journal of Gun Launch & Control
关键词 串联增强 电磁轨道炮 离散封装 螺栓预紧 封装性能 series enhanced electromagnetic railgun discrete seal blot pre-tightening encapsu lation performance
  • 相关文献

参考文献16

  • 1HILMAR P,FRANCIS J,VOLKER W. Technical aspectsof railguns[J]. IEEE Transactions on Magnetics,1995,31 (1):348 - 353.
  • 2FAIR H D. Electromagnetic launch:a review of the U. S.national program [J]. IEEE Transactions on Magnetics,1997,33 (1):11 - 16.
  • 3FAIR H D. Electromagnetic launch science and technologyin the United States enters a new era[J]. IEEE Transactions on Magnetics,2005,41 (1):158 - 16.
  • 4FAIR H D. Advances in electromagnetic launch scienceand technology and its applications [J]. IEEE Transactions on Magnetics,2009,45 (1):225 - 230.
  • 5DAVID C H ,STEVEN G. U K electric gun national overview [J]. IEEE Transactions on Magnetics,2003,39(1):18 - 21.
  • 6TREVOR E J ,DAVID C J. Contact pressure distributionand transition in solid armatures[J]. IEEE Transactionson Magnetics,2001,37 (1):81 - 85.
  • 7BARBER J P,BAUER D P,PARKER J V,et al. A survey of armature transition mechanisms[J]. IEEE Transactions on Magnetics,2003,39 (1):47 - 51.
  • 8MCNAB I R,CRAWFORD M T,SATAPATHY S S,etal. IAT armature development[J]. IEEE Transactions onPlasma Science,2011,39 (1):442 - 451.
  • 9GUO Wei,ZHANG Tao,LI Juxiang,et al. Design and testing a novel armature on railgun[J]. IEEE Transactionson Plasma Science,2015,43(5):1119 - 1124.
  • 10GEORGE A,PROULX G A. Railgun with steel barrelsections and thermal management system [J]. IEEETransactions on Plasma Science,2015,43 (5 ):1642 - 1646.

二级参考文献32

  • 1Naval EM Railgun Innovative Naval Prototype [ EB/OL ], Precision Strike ArmamentsTechnology Fire Power Forum2008 June. http://www, dtic. mil/ndia/2008psa_ peo/ elliotday2, pdf,2010 - 08 - 18.
  • 2McNAB I R, STEFANI F, CRAWFORD M, et al. Development of a naval railgun [ J ]. IEEE Transactions of Magnetics ,2005,41 ( 1 ) :206 - 210.
  • 3KERRISK J F. Current distribution and inductance calculations for railgun conductors[ R]. New Mexico, USA : Los Alamos National Laboratory, 1981.
  • 4LOCKWOOD M R. Design and construction of an expandable series trans-augmented electromagnetic railgun [ D]. Naval Postgraduate School, 1999.1 - 57.
  • 5THIAGARAJAN V ,HSIEH Kuo-ta . An algorithm to couple an external RL circuit with the finite-element code EMAP3D [ J ]. IEEE Transactions of Magnetics, 2007,43 (1) :376 -379.
  • 6GALLANT J. Parametric study of an augmented railgun [ J ]. IEEE Transactions of Magnetics, 2003,39 ( 1 ) :451 - 455.
  • 7TZENG J T. Structural mechanics for electromagnetic rail guns[ C]. The 12th Symposium on Electromagnetic Launch Technology,2004. 127 - 132.
  • 8Meger R A, Cooper K P, Jones H N. Analysis of rail surfaces from a multi-shot railgun [J ]. IEEE Transactions on Magnetic, 2005,41( 1 ) :211-213.
  • 9Satapathy S, Watt T, Persad C. Effect of geometry change on armature behavior[ J ]. IEEE Transactions on Magnetic, 2007,43 ( 1 ) :408-412.
  • 10Landen D, Satapathy S. Current effects in the laminated containment structure of railguns [C]. Proceeding of the 13rd EM Launch Symposium, Germany : Potsdam, 2006: 22-25.

共引文献44

同被引文献55

引证文献4

二级引证文献17

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