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传统的陶瓷-金属复合装甲为简单的双层结构,其中陶瓷作为迎弹面板.金属作为能量吸收背板.这种结构的明显不足是其抗多发弹能力差.用金属将陶瓷包裹起来是提高装甲抗多发弹能力的一个有效方法.封装金属为陶瓷提供了最大程度的结构限制,因而有助于提高复合装甲抗多发弹的能力.主要介绍目前制备金属封装陶瓷复合装甲的方法,探讨其中的关键技术.

参考文献

[1] 孙志杰,吴燕,张佐光,仲伟虹,沈建明.防弹陶瓷的研究现状与发展趋势[J].宇航材料工艺,2000(05):10-14,23.
[2] 王文俊.陶瓷复合装甲防弹机理及防弹性能[J].北京理工大学学报,1997(02):147.
[3] 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的研究[J].兵工学报,2003(02):219-221.
[4] Hauver G E.Ballistic performance of ceramic targets[A].USA,1993
[5] Eugene Medvedovski .ALUMINA CERAMICS FOR BALLISTIC PROTECTION PART 2[J].American Ceramic Society bulletin,2002(4):45-50.
[6] 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 and Manufacture,2004,44:307-316.
[7] Lundberg P;Renstrom R;Lundberg B .Impact of metallic projectiles on ceramic targets:transition between interface defeat and penetration[J].International Journal of Impact Engineering,2000,24:259-275.
[8] M. Lee;Y.H. Yoo .Analysis of ceramic/metal armour systems[J].International journal of impact engineering,2001(9):819-829.
[9] 汪建锋,傅苏黎,丁华东.陶瓷基装甲抗枪弹机理研究现状[J].装甲兵工程学院学报,2004(03):62-65,72.
[10] 杨超,陈炯.陶瓷块复合材料抗弹性能研究[J].兵器材料科学与工程,2003(02):15-18.
[11] 黄良钊,张巨先.弹丸对陶瓷靶侵彻试验中的约束效应研究[J].兵器材料科学与工程,1999(04):13-17.
[12] Dov Sherman .Impact failure mechanisms in alumina tiles on finite thickness support and the effect of confinement[J].International journal of impact engineering,2000(3):313-328.
[13] Shockey D A;Marchand A H;Skaggs S R et al.Failure phenomenology of confined ceramic targets and impacting rods[J].International Journal of Impact Engineering,1990,9:263-275.
[14] 黄良钊.抗弹陶瓷的特殊耗能机制研究[J].兵器材料科学与工程,2001(05):3-6.
[15] 李永池,王道荣,姚磊,于少娟.陶瓷材料的抗侵彻机理和陶瓷锥演化的数值模拟[J].弹道学报,2004(04):12-17.
[16] Hauver G E.Enhanced ballistic performance of ceramics[J].Proc Army Sci Cortf,1994(04):1633-1640.
[17] Lankford J.Dynamic compressive failure of ceramics under confinement[A].Gaithersburg MD,1991:67-73.
[18] Charles E et al.The ballistic performance of confined Al2O3 ceramic tiles[J].International Journal of Impact Engineering,1992,12(02):167-187.
[19] Richard Palicka;Daniel Ashkin .Ceramic armor and method or making by encapsulation including use of a stiffening plate[P].US 20060137517,2006-06-29.
[20] Kelsey;Vector P .Method and system for reaction bondedceramic armor formed in situ in a metal containment[P].WO 2006083319,2006-08-10.
[21] Henry S chu;Thomas M Lillo;Kevin M McHugh .Coated armor system and process for making the same[P].US 20060105183,2006-03-18.
[22] Stanley Ahkowitz et al.Impact resistant clad composite armor and method for forming such armor[P].US 4987033,1991-01-22.
[23] Steven Collier;Atakan Peker .Encapsulated ceramic armor[P].US 20060269765,2006-11-30.
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