[1] Daneshjoo K, Rahimzadeh M, Ahmadi R, et al. Dynamic response and critical velocity studies in an electromagnet railgun[J]. IEEE Transaction s on Magnetics, 2007, 43(1): 126-127. [2] 李强, 范长增,贾元志,等. 电磁轨道炮导轨和电枢中的焦耳热分析[J]. 弹道学报, 2006, 18(4):39-40. LI Qiang, FAN Chang-zeng, JIA Yuan-zhi, et al. Rail and armature Joule heating of an electromagnetic rail gun[J]. Journal of Ballistics, 2006, 18(4): 39-40. (in Chinese) [3] Mankowski J, Dickens J, Giesselmann M, et al. A bench top railgun wit h distributed energy sources[J]. IEEE Transactions on Magnetics, 2007, 43(1):1 67. [4] Engel T, Neri J, Nunnally W, et al. Efficiency and scaling of constan t inductance gradient DC electromagnetic launchers[J]. IEEE Transactions on Ma gnetics, 2006, 42(8):2044-2047. [5] Keshtkar A. Effect of rail dimension on current distribution and indu ctance gradient[J]. IEEE Transactions on Magnetics, 2005, 41(1):385-386. [6] Keefer D, Crawford R, Taylor J. Inductance gradient scaling experimen ts in an augmented railgun[J]. IEEE Transactions on Magnetics, 1995, 31(1):327 -328. [7] 刘国强,赵凌志,将继娅. Ansoft工程电磁场有限元分析[M]. 北京:电 子工业出版社,2005:199-202. LIU Guo-qiang, ZHAO Ling-zhi, JIANG Ji-ya. Ansoft finite element for the anal ysis of engineering electromagnetics[M]. Beijing:Publishing House of Electr onics Industry,2005: 199-202. (in Chinese) [8] 孙立强,袁伟群,严萍. 基于时频分析的电磁轨道发射电感梯度的研究[J ]. 电工电能新技术,2008,4(2):39-40. SUN Li-qiang, YUAN Wei-qun, YAN Ping. Study of rail inductance gradient during EM rail launch based on time frequency analysis[J]. Advanced Technology of El ectrical Engineering an Energy,2008, 4(2):39-40. (in Chinese) [9] 卢新培,潘垣. 分散储能法的局限性[J]. 兵工学报, 2001,22(2):149-15 1. LU Xin-pei, PAN Yuan. Limitations of distributed energy store (DES) on a railgu n[J]. Acta Armamentarii, 2001, 22(2): 149-151. (in Chinese) [10] Musolino A, Raugi M, Rizzo R, et al. The multistage railgun [J]. IEEE Trans on Magnetics, 2001, 37(2): 445-447. |