Lindemuth I R, Brownell J H, Greene A E.Exploding metallic foils for slapper, fuse and hot plasma applications: computational predictions, experimental observations[J].IEEE Pulsed Power, 1987,30:299-305.
[2]
Majalee A, Ikkurthi V R, Chaturvedi P S.Mixed 3-D/2-D simulation of an exploding foil opening switch[J].IEEE Pulsed Power, 2003,2:7803-7815.
[3]
周翔.用于冲击片雷管的Al/CuO反应含能桥膜研究[D].南京: 南京理工大学, 2012.ZHOU Xiang.Research on Al/CuO-based reactive energetic bridge foils applied in exploding foil initiator[D].Nanjing: Nanjing University of Science & Technology, 2012.
[4]
Rui Guo, Yan Hu, Ruiqi Shen, et al.A micro initiator realized by integrating KNO3@CNTs nanoenergetic materials with a Cu microbridge[J].Chemical Engineering Journal, 2012,211: 31-36.
[5]
韩成智.电爆炸箔起爆系统作用过程研究[D].北京: 北京理工大学, 2006.HAN Chen-zhi.Study on process of exploding foil initiation system[D].Beijing: Beijing Institute of Technology, 2006.
[6]
胡晓棉.电爆炸箔起爆系统的设计优化、数值模拟及安全性[D].北京: 北京理工大学, 1998.HU Xiao-mian.Design, numerical simulation, and safety of exploding foil initiation system[D].Beijing: Beijing Institute of Technology, 1998.
[7]
Frank P I, David P D.Fundamentals of Heat and Mass Transfer[M].4th edition, John Wiley & Sons, New York, 1996.
[8]
Burgess T J.Electrical resistivity model of metals[C]∥4th International Conference on Megagauss Magnetic-Field generation and related Topic, Santa Fe, N.Mex, 1986
[9]
Tsang T.Classical Electrodynamics[M].World Scientific, New Jersey, 1999.
[10]
谭迎新, 张景林, 谭汝媚.飞片起爆试验装置中能源供给系统的性能[J].火炸药学报, 2005,28(1): 22-24.TAN Ying-xin, ZHANG Jing-lin, TAN Ru-mei.Properties of the supplying power system for the flyer-initiating device[J].Chinese Journal of Explosives & Propellants, 2005,28(1): 22-24.
[11]
Resnick R, Halliday D.Physics[M].Wiley International Edition, New York, 1966.
[12]
Dolan T J.Fusion Research: Principles, Experiments and Technology[M].Pergamon Press, Oxford, 2000.
[13]
Baginski M E, Baginski T A, Thomas K.A comparison of the electrodynamics of metal under the action of large electric currents[J].Inter J Applied Electromagnetics and Mechanics, 1996,7: 193-202.
[14]
曾庆轩,袁士伟,罗承沐.新型电爆炸箔系统电压对爆发电流影响的实验研究[J].火工品, 2002(1): 41-42.ZENG Qing-xuan, YUAN Shi-wei, LUO Cheng-mu.Study to the effect of the voltage of a new type of exploding foil initiator system to firing current[J].Initiators & Pyrotechnics, 2002(1): 41-42.
[15]
成剑,栗保明.电爆炸过程导体放电电阻的一种计算模型[J].南京理工大学学报,2003,27(4): 371-375.CHENG Jian, LI Bao-ming.A theoretical model for wire resistance in wire exploding process[J].Journal of Nanjing University of Science and Technology, 2003,27(4): 371-375.
[16]
王莹.电爆炸导体及其应用[J].爆炸与冲击,1986,6(2): 184-192.WANG Yin.The application of exploding conductor[J].Explosion and Shock Waves, 1986,6(2): 184-192.
[17]
Logan J D, Lee R S, Weingart R C.Calculation of heating and burst phenomena in electrically exploded foils [J].J Appl Phys, 1977,48(2): 621-628.
[18]
Baginski M E, Shaffer E C, Thomas K A.A comparison of the electrodynamics of metal under the action of large electric currents[J].Inter J Applied Electromagnetics and Mechanics, 2000,11: 79-93.
[19]
伍俊英, 冯长根, 陈朗.金属电爆炸等离子体辐射温度测量[J].战术导弹技术, 2006(5): 31-33.WU Jun-ying, FENG Chang-gen, CHEN Lang.Plasma radiation temperature measurement of metal explosion[J].Tactical Missile Technology, 2006(5): 31-33.
[20]
Michael J M, Ronald J A.particle response to shockwaves in solids: dynamic witness plate/PIV method for detonations[J].Experiments in Fluids, 2007,43(2-3): 163-171.
[21]
伍俊英, 陈朗, 王飞.金属桥箔电爆炸等离子体流场实验研究[J].北京理工大学学报, 2011,31(1): 1-4.WU Jun-ying, CHEN Lang, WANG Fei.Experimental study of plasma evolution produced by metal bridge foil exploding[J].Transactions of Beijing Institute of Technology, 2011,31(1): 1-4.