Principle Study on Improving Destroying Power of Lead Cable Covered With Water

ZUO Zhen-ying;CHEN Mei-ling;YI Wen-jing

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    Published By: Journal Of Ballistics

    CN 32-1343/TJ

Journal Of Ballistics ›› 2011, Vol. 23 ›› Issue (3) : 21-21.

Principle Study on Improving Destroying Power of Lead Cable Covered With Water

  • ZUO Zhen-ying, CHEN Mei-ling, YI Wen-jing
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Abstract

To study the power of exposed Lead Cable(LC) in the air and LC covered with water destroying Double Hollow Tempered Glass(DHTG), the experiment device of double hollow glass was designed, in which the charge was initiated by 8# electric detonation. The model of detonation product affecting DHTG was built. By Lagrangian algorithm, the detonation of exposed LC in the air and LC covered with water was calculated respectively. The theory analysis and experiment results show that the double glass was destroyed by detonation-wave pressure and detonation-product pressure respectively while LC covered with water destroying DHTG. The simulation results futher verify that the pressure of detonation gas of LC covered with water declines slowly, and the destroying power improves remarkably.

Key words

lead cable covered with water / destroying power / shock wave

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ZUO Zhen-ying, CHEN Mei-ling, YI Wen-jing. Principle Study on Improving Destroying Power of Lead Cable Covered With Water. Journal Of Ballistics. 2011, 23(3): 21-21

References

[1] 张鹏翔, 顾文彬, 叶序双. 浅层水中爆炸冲击波切断现象初探[J]. 爆炸与冲击, 2002, 22(3): 221-228. ZHANG Peng-xiang, GU Wen-bin, YE Xu-shuang. Discussions of blasting shock waves cut-off in shallow-layer water[J]. Explosion and Shock Waves, 2002, 22(3): 221-228. (in Chinese)
[2] 赵继波, 谭多望, 李金河, 等. TNT药柱水中爆炸近场压力轴向衰减规律[J]. 爆炸与冲击, 2008, 28(6): 539-543. ZHAO Ji-bo, TAN Duo-wang, LI Jin-he, et al. Axial pressure damping of cylindrical TNT charges in the near underwater-explosion field[J]. Explosion and Shock Waves, 2008, 28(6): 539-543. (in Chinese)
[3] 李金河, 赵继波, 谭多望, 等. 炸药水中爆炸的冲击波性能[J]. 爆炸与冲击, 2009, 29(3): 172-176. LI Jin-he, ZHAO Ji-bo, TAN Duo-wang, et al. Underwater shock wave performances of explosives[J]. Explosion and Shock Waves, 2009, 29(3): 172-176. (in Chinese)
[4] 庞军. TNT装药水中爆炸的数值模拟[J]. 火炸药学报, 2009, 32(5): 37-40. PANG Jun. Numerical simulation of TNT charge underwater explosion[J]. Chinese Journal of Explosives and Propellants, 2009, 32(5): 37-40. (in Chinese)
[5] 时党勇, 李裕春, 张胜民. 基于ANSYS/LS-DYNA 8. 1进行显式动力分析[M]. 北京: 清华大学出版社, 2005. SHI Dang-yong, LI Yu-chun, ZHANG Sheng-min. Explicit dynamic analysis based on ANSYS/LS-DYNA 8. 1[M]. Beijing: Tsinghua University Press, 2005. (in Chinese)
[6] 隋树元, 王树山. 终点效应学[M]. 北京: 国防工业出版社, 2000. SUI Shu-yuan, WANG Shu-shan. Terminal ballistics[M]. Beijing: National Defence Industry Press, 2000. (in Chinese)

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