[1] 宋新彬.现代主战坦克综合防护系统发展概况及展望[J].现代军事,2010,(12): 36-39. SONG Xin-bin. The status and trend of modern tank synthesis protecting system[J].Modern Military Affairs,2010,(12):36-39. (in Chinese) [2] 杜雪峰,刘天生.国外新型装甲的发展[J].四川兵工学报,2005,26(3):15-18. DU Xue-feng, LIU Tian-sheng. Development of foreign reactive armor[J].Sichuan Ordnance Journal, 2005, 26(3):15-18. (in Chinese) [3] 张自强, 赵宝荣, 张锐生, 等. 装甲防护技术基础[M].北京:兵器工业出版社,2005. ZHANG Zi-qiang, ZHAO Bao-rong, ZHANG Rui-sheng, et al. The base of armour protecting technology[M]. Beijing: The Publishing House of Ordnance Industry,2005. (in Chinese) [4] 王俊人. 城市作战环境下的装甲防护研究[J].四川兵工学报,2005,26(1):15-16. WANG Jun-ren. Research on the armor protection under city battle environment [J].Sichuan Ordnance Journal,2005,26(1):15-16. (in Chinese) [5] Held Manfred. Time distance plots for ERA-design[J]. Propellants, Explosives, Pyrotechnics, 2001,26:258-262. [6] 郑萍, 杨树康. 电磁装甲及其发展[J].微电机,2002,35(2):36-39. ZHEN Ping, YANG Shunkang. Electromagnetic armor and its development[J]. Micromotors Servo Technique, 2002, 35(2):36-39. (in Chinese) [7] Wickert M. Electric armor against shaped charges: analysis of jet distortion with respect to jet dynamics and current flow[J].TEEE Transaction on Magnetics,2007,(43):426-429. [8] 赵晓凡.坦克装甲车辆主动防御系统研究[J].车辆与动力技术,2002,(3):1-2. ZHAO Xiao-fan. The research on active defense in the tank and armed vehicle[J]. Vehicle Power Technology, 2002,(3):1-2. (in Chinese) [9] 孔繁清,薛军楼.主动防护系统的发展[J].坦克装甲车辆,2000,(4):3-5. KONG Fan-qing, XUE Jun-lou. Tank active protection defense system[J]. Tank Armor Vehicle, 2000,(4):3-5. (in Chinese) [10] 刘薇,杨军. 装甲防护材料的研究现状及发展趋势[J].热加工工艺,2011,40(2):108-111. LIU Wei, YANG Jun. Current status and development of armor protective material[J]. Hot Working Technology,2011,40(2):108-111. (in Chinese) [11] Goncalves D P, Melo F C L, Klein A N, et al. Analysis and investigation of ballistic impact on ceramic/metal composite armor[J].International Journal of Machine Tools & Manufacture, 2004,44:307-316. [12] Lee M, Yoo Y H. Analysis of ceramic/metal armor systems[J].Int J Impact Engng,2001,25(9):819-829. [13] Medvedovski E. Alumina ceramics for ballistic protection[J].American Ceramic Society Bulletin, 2002,81(4):45-50. [14] 胡丽萍,王智慧,侯圣英,等. 大倾角陶瓷复合装甲抗弹性能研究[J].兵工自动化,2010,(2):12-13. HU Li-ping, WANG Zhi-hui, HOU Shen-ying, et al. Study on anti-bomb performance of large inclination [J]. Ordnance inDustry Automation, 2010,(2):12-13. (in Chinese) [15] Stressburg E, Lexo W B, Krell A. Ceramic armor with submicron alumina against armor piercing projectile[J].Ceramic Transitions,2001,134:83-90. [16] 黄英, 刘晓辉, 李郁忠. 复合材料在坦克装甲防护中的应用[J].玻璃钢复合材料,1999,(3):15-20. HUANG Ying, LIU Xiao-hui, LI Yu-zhong. Application of composites in tank armored protection fiber reinforced plastics/composites[J]. Glass-steel Composite Material, 1999,(3):15-20. (in Chinese) [17] 张庆明,黄风雷,恽寿榕,等.三维纺织复合材料在兵器上的应用[J].兵器材料科学与工程,1996,(5):59-63. ZHANG Qing-ming, HUANG Feng-lei, YEN Shou-rong, et al. The application of three dimensional textile composites on weapons[J]. Ordnance Material Science and Engineering, 1996,(5):59-63. (in Chinese) [18] 张玉龙, 杨淑丽,郭斌. 坦克装甲车辆用高新材料技术[J].车辆与动力技术,2004,(1):56-62. ZHANG Yu-long, YANG Shu-li, GUO Bin. The new high performance material using on tank armor vehicle[J]. Vehicle & Power Technology, 2004,(1):56-62. (in Chinese) [19] 杜忠华, 赵国志, 杨玉林. 陶瓷/玻璃纤维/钢板复合靶板抗弹性能研究[J].兵工学报,2003,24(2):219-221. DU Zhong-hua, ZHAO Guo-zhi, YANG Yu-lin. A study on the performance of a composite armour plate of cerametic/GRFP/steel[J]. Acta Armamentarii, 2003,24(2):219-221. (in Chinese) [20] 杨定富, 吴珂, 张勇. 美军车辆防护发展演变及启示[J].国防技术基础,2010,(2):52-54. YANG Ding-fu, WU Ke, ZHANG Yong. The evolvement and revelation of development of U.S. vehicle protection[J]. The Base Technology of National Defence, 2010,(2):52-54. (in Chinese) [21] 龙隆. 未来概念主战坦克[J].坦克装甲车辆,2001,(11):13-15. LONG Long. The concept main tank in future[J]. Tank Armor Vehicle, 2011,(11):13-15. (in Chinese) |