期刊文献+

电磁箍缩铝带阵负载的研制 被引量:4

Preparing aluminum cingulum array load for Z-pinch
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摘要 根据电磁箍缩物理实验需求,设计出了一种具有自适应结构的电磁箍缩铝带阵负载。采用手工裁剪和激光裁剪两种方法来制备铝带,表征了两种方法制备出铝带的边缘形貌,并优选出激光裁剪法做为铝带的裁剪方法。分析了激光裁剪铝带的力学性能,30mm×1mm×5μm的铝带断裂强度约116cN,延伸率约为1.3%。利用上述铝带成功装配出了具有自适应结构的电磁箍缩铝带阵负载,且其自适量达到了4.5mm的物理实验需求,可应用于"强光一号"物理实验。 For Z-pinch physical experiment,aluminum cingulum array loads with self-accommodating structure were designed.The cutting technology for aluminum foil was researched by handiwork and laser.The figure and mechanical performance of aluminum cingulum that was cut from aluminum foil were characterized,and the aluminum cingulums that was cut by laser were suitable for aluminum cingulum array loads.The mechanical performance of aluminum cingulum cut by laser was characterized.For a 30mm×1mm×5μm aluminum cingulum,the tensile strength was about 116cN and the elongation was about 1.3%.Aluminum cingulum array loads with self-accommodating structure were prepared using the aluminum cingulum cut by laser,and the self-accommodating quantity was up to 4.5mm which could meet the need of"Qiangguang-Ⅰ"facility physical experiment.
出处 《强激光与粒子束》 EI CAS CSCD 北大核心 2014年第7期66-69,共4页 High Power Laser and Particle Beams
基金 等离子体物理重点实验室基金项目(9140C680502120C68255) 国家自然科学基金项目(11204280)
关键词 电磁箍缩 铝带阵负载 自适应 力学性能 Z-pinch aluminum cingulum array self-accommodating mechanical performance
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参考文献12

  • 1Mehlhorn T A, Bailey J E, Bennett G, et al. Recent experimental results on ICF target implosions by Z-pinch radiation sources and their rel- evance to ICF ignition studies[J]. Plasma Phys Contr Fusion, 2003, 45(12A) :325-334.
  • 2Rochau G A, Bailey J E, Chandler G A, et al. High performance capsule implosions driven by the Z pinch dynamic hohlraum[J]. Plasma Phys Contr Fusion, 2007, 49(12B) :591 -600.
  • 3Hammer J H, Tabak M, Wilks S C, et al. High yield inertial confinement fusion target design for a Z-pinch-driven hohlraum[J]. Phys Plasmas, 1999(6) :2129-2134.
  • 4Haines M G, Sanford T W L, Smirnov V P. Wire-array Z pinch: a powerful X-ray source for ICF[J]. Plasma Phys Contr Fusion, 2005, 47 (B1) :162-168.
  • 5Cuneo M E, Sinars D B, Waisman E M, et al. Compact single and nested tungsten-wire-array dynamics at 14-19 MA and applications to in ertial confinement fusion[J], Phys Plasmas, 2006, 13:056318.
  • 6Spielman R B, Deeney C, Douglas M R, et al. Wire array Z pinches as intense X-ray sources for inertial confinement fusion[J]. Plasma Phys Contr Fusion, 2000, 42(12B) :157-164.
  • 7Blesener I C, Greenly J B, Kusse B R, et al. Pinching of ablation streams via magnetic field curvature in wire array Z pinches[J]. Phys Plasmas, 2012, 19:022109.
  • 8薛创,宁成,张扬,肖德龙,孙顺凯,黄俊,丁宁,束小建.Z箍缩丝阵负载区域的似稳态磁场分布[J].强激光与粒子束,2011,23(9):2391-2395. 被引量:1
  • 9丁宁,邬吉明,杨震华,符尚武,宁成,刘全,束小建,张扬,戴自换.Z箍缩内爆的MARED程序1维模拟分析[J].强激光与粒子束,2008,20(2):212-218. 被引量:12
  • 10华欣生,彭先觉,李正宏,徐荣昆,许泽平,杨建伦,郭存,蒋世伦,丁宁,宁成,刘德斌,顾元朝.快Z箍缩钨丝阵内爆物理研究[J].强激光与粒子束,2006,18(9):1475-1480. 被引量:19

二级参考文献64

  • 1段耀勇,郭永辉,王文生,邱爱慈.钨丝阵等离子体Z箍缩的数值模拟[J].物理学报,2004,53(8):2654-2660. 被引量:14
  • 2王刚华,胡熙静,孙承纬.双层钨衬套Z箍缩内爆数值模拟[J].高压物理学报,2004,18(4):364-367. 被引量:5
  • 3Ryutov D D, Derzon M S, Matzen M K. The physics of fast Z pinches[J]. Rev Mod Phys ,2000,72(1):167-222.
  • 4Lebedev S V, Beg F N, Bland S N, et al. Effect of core-corona plasma structure on seeding of instabilities in wire array Z pinche[J] Phys RevLett ,2000,85(1) ..98 101.
  • 5Douglass J D, Pikuz S A, Shelkovenko T A, et al. Structure of the dense cores and ablation plasmas in the initialization phase of tungsten wire array Z pinches[J]Phys Plasmas, 2007,14 : 012704.
  • 6Martin M R, Seyler C E, Greenly J B, et al. The role of magnetic field in the transition to streaming ablation in wire arrays[J]. Phys Plas- mas ,2010,17:052706.
  • 7Felber F S, Rostoker N. Kink and displacement instabilities in imploding wire arrays[J]. Phys Fluids, 1981,24(6) : 1049-1055.
  • 8Cuneo M E, Sinars D B, Bliss D E, et al. Characteristics and scaling of tungsten-wire-array Z-pinch implosion dynamics at 20 MA[J]. Phys Rev E, 2005, 71: 046406.
  • 9Lebedev S V, Beg F N, Bland S N, et al. Effect of discrete wires on the implosion dynamics of wire array Z pinches[J]. Phys Plasmas, 2001, 8:3734-3747.
  • 10Aleksandrov V V, Branitskii A V, Volkov G S, et al. Dynamics of heterogeneous liners with prolonged plasma creation[J]. Plasma Phys Rep, 2001, 27:89-109.

共引文献29

同被引文献34

  • 1李治源,卢聘,向红军,陈少辉.基于电爆炸机理的被动电磁装甲板间距优化分析[J].装甲兵工程学院学报,2013,27(5):52-56. 被引量:4
  • 2刘德斌,邱龙会,付志兵,孙祚科,余斌.弹簧支撑自适应Z-pinch单层柱面丝阵负载研制[J].强激光与粒子束,2004,16(8):1009-1012. 被引量:9
  • 3李朝阳,谢军,吴卫东,唐永建,陆晓明,杜凯,郑凤成.多辊轧机冷轧技术在靶材料制备中的应用[J].强激光与粒子束,2006,18(1):81-84. 被引量:13
  • 4李建兵,牛忠霞,周东方,师宇杰.电流趋肤效应的二维数值分析[J].微电子学与计算机,2007,24(1):9-14. 被引量:13
  • 5陈少辉.被动电磁装甲对破甲弹的防护机理研究[D].石家庄:军械工程学院,2010.
  • 6Wickert M.Electric armor against shaped charges:analysis of jet distortion with respect to jet dynamics and current flow[J].IEEE Transactions on Magnetics,2007,43(7):426-429.
  • 7Littlefield D L,Powell J D.The effect of electromagnetic fields and the stability of a perfectly conducting shaped-charge jet[C]//IEEE International Symposium on Ballistic.1990:359-368.
  • 8Shvetsov G A,Matrosov A D,Pavlovskii A I.Current instability of shaped charge jets[C]//IEEE Pulsed Power Conference.1995:1136-1141.
  • 9Shvetsov G A,Matrosov A D,Babkin A V,et al.Disruption of shaped-charge jets due to axial current[C]//IEEE International Symposium on Ballistics.1999:581-587.
  • 10Littlefield D L.Finite conductivity effects on the MHD instabilities in uniformly elongating plastic jets[J].Phys Fluids A,1991,3(6):1666-1673.

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