Formation of Toroidal Explosively Formed Projectile and Its Penetration into Concrete Targets

被引:0
|
作者
Hu, Yu [1 ]
Ji, Chong [1 ]
Wang, Yuting [1 ]
Wang, Xin [1 ]
Zhao, Changxiao [1 ]
Qian, Huanyu [1 ]
Wang, Kejie [1 ]
机构
[1] Univ Peoples Liberat Army, Coll Field Engn, Army Engn, Nanjing 210007, Peoples R China
基金
中国国家自然科学基金;
关键词
Shaped charge; toroidal explosively formed projectile; kill element forming mechanism; liner structural parameters; impact penetration; HIGH-VELOCITY IMPACT; SHAPED CHARGE; BALLISTIC PERFORMANCE; DAMAGE; JET;
D O I
10.1142/S0219455426501129
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
The study of the penetration efficiency of formed charges with different liner structures has practical implications for optimizing combatant structure design. In this paper, a kind of toroidal explosively formed projectile (TEFP) is proposed and the influence of the cone angle and morphology of the liner on the formation mechanism and penetration performance of TEFP is analyzed by numerical simulation. The results showed that, with the same charge mass, the TEFP exhibited a better hole reaming performance than the shaped charge jet; as the liner cone angle increased from 90 degrees to 150 degrees in a stepwise manner, the axial velocity of the TEFP increased slightly, while the penetration cavity diameter tended to decrease. Compared with the straight cone liner structure, the curved cone liner TEFP significantly improved the penetration depth with a slightly lower penetration cavity diameter, realizing the large-diameter penetration breakout effect for concrete targets.
引用
收藏
页数:31
相关论文
共 50 条
  • [21] Penetration Deep of Non-deformable Projectile into Concrete Targets
    Sun, WeiWei
    Yuan, Jun
    TRENDS IN CIVIL ENGINEERING, PTS 1-4, 2012, 446-449 : 3604 - +
  • [22] Computer simulation of explosively formed projectile with canted tail and its exterior ballistics
    Shi, D.-Y. (sdyhf@bit.edu.cn), 1600, China Ordnance Industry Corporation (33):
  • [23] The maximum penetration depth of hypervelocity projectile penetration into concrete targets: Experimental and numerical investigation
    Zhang, Shanbao
    Kong, Xiangzhen
    Fang, Qin
    Peng, Yong
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2023, 181
  • [24] Damage of a large-scale reinforced concrete wall caused by an explosively formed projectile (EFP)
    Hao, Li-kai
    Gu, Wen-bin
    Zhang, Ya-dong
    Yuan, Qi
    Xie, Xing-bo
    Zou, Shao-xin
    Wang, Zhen
    Lu, Ming
    DEFENCE TECHNOLOGY, 2023, 28 : 280 - 297
  • [25] Damage of a large-scale reinforced concrete wall caused by an explosively formed projectile (EFP)
    Li-kai Hao
    Wen-bin Gu
    Ya-dong Zhang
    Qi Yuan
    Xing-bo Xie
    Shao-xin Zou
    Zhen Wang
    Ming Lu
    Defence Technology, 2023, 28 (10) : 280 - 297
  • [26] Mach Wave Control in Explosively Formed Projectile Warhead
    Zhu, Chuan-Sheng
    Huang, Zheng-Xiang
    Zu, Xu-Dong
    Xiao, Qiang-Qiang
    PROPELLANTS EXPLOSIVES PYROTECHNICS, 2014, 39 (06) : 909 - 915
  • [27] Study on penetration of concrete targets by ogive-nose steel projectile
    Department of Modern Mechanics, University of Science and Technology of China, Hefei 230026, China
    不详
    Gaoya Wuli Xuebao, 2007, 3 (242-248):
  • [28] Experimental and numerical investigation on projectile penetration resistance of prefabricated concrete targets
    Yang, Yaozong
    Kong, Xiangzhen
    Tang, Junjie
    Fang, Qin
    Meng, Yi
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2024, 193
  • [29] Application of nonlinear programming to explosively formed projectile design
    Houman, J
    Ruoqi, Z
    Shouqi, Z
    JOURNAL DE PHYSIQUE IV, 2000, 10 (P9): : 451 - 456
  • [30] Shock deformation twinning in an iron explosively formed projectile
    Pappu, S
    Murr, LE
    MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2000, 284 (1-2): : 148 - 157