Penetration Power of Large Underwater Explosion Height of Shaped Charge to Multi-layer Spacer Target

被引:0
|
作者
Yang S. [1 ]
Wang S.-S. [1 ]
Wang Y.-Z. [2 ]
Gui Q.-Y. [1 ]
Zeng J. [3 ]
Zheng C.-J. [3 ]
Jia X.-Y. [1 ]
机构
[1] State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing
[2] CASIC Research Institute of Intelligent Decision Engineering, Wuhan
[3] Shandong Special Industry Group Co. Ltd., Zibo
关键词
Explosion mechanics; Jet/JPC/EFP; Multilayer spacer target; Shaped charge; Underwater penetration;
D O I
10.14077/j.issn.1007-7812.202111001
中图分类号
学科分类号
摘要
In order to study and compare the penetration power of typical shaped charge structure (Jet / JPC / EFP) on multi-layer spacer target under the condition of large underwater explosion height, a shaped charge and a multi-layer spacer target structure are designed, combined with a certain engineering background. Jet, JPC and EFP are formed by conical cover, hemispherical cover and spherical cover respectively. The process of underwater large explosion height penetration is simulated by AUTODYN software. Then, two typical hemispherical masks with variable wall thickness are simulated and compared with those with equal wall thickness. Finally, the underwater explosion test of the gradient wall thinkness shaped charge with thick top and thin edge is carried out. The results show that under the condition of large underwater explosion height, JPC with the same charge structure has greater ability to resist the interference of water medium and spacer target and the mass dissipation compared with Jet with the same charge structure, with higher speed and stronger storage capacity than EFP, so it relatively has the highest penetration ability among these structure. The JPC of the gradual wall thickness hemispherical cover with thick top and thin edge is stretched more evenly than that with equal wall thickness, which can improve the effective mass and kinetic energy of the jet and significantly improve the penetration ability. The subsequent penetration ability of the studied example after penetrating the main target plate can be increased by about 25%. © 2022, Editorial Board of Journal of Explosives & Propellants. All right reserved.
引用
收藏
页码:243 / 248
页数:5
相关论文
共 20 条
  • [1] LI Lei, FENG Shun-shan, Research status and prospect of damage effect of underwater explosion on ship structure, Ship Science and Technology, 3, pp. 26-30, (2008)
  • [2] pp. 265-266, (2013)
  • [3] LI Bing, FANG Yi, FENG Peng-fei, Research progress on underwater weapon damage of shaped charge warhead, Journal of Weapon Equipment Engineering, 37, 2, pp. 1-6, (2016)
  • [4] pp. 215-236, (2019)
  • [5] pp. 42-77, (2009)
  • [6] pp. 124-147, (2021)
  • [7] GAO Yong-qi, LIU Hong, ZHANG Yi, Current situation and development trend of torpedo guidance system, Ship Science and Technology, 35, 2, pp. 1-5, (2013)
  • [8] LIANG Zheng-feng, HU Huan-xing, SUN Jian, Et al., Numerical simulation and experimental study on the effect of spacer target on jet penetration, Explosion and Impact, 4, pp. 381-386, (2002)
  • [9] CHEN Shao-hui, LEI bin, Penetration depth model and numerical simulation of shaped charge jet into spacer target, Weapon Material Science and Engineering, 34, 1, pp. 35-38, (2011)
  • [10] HU Feng, WU Hao, FANG Qin, Et al., Numerical simulations of shaped charge jet penetration into concrete-like targets, International Journal of Protective Structures, 8, 2, pp. 237-259, (2017)