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兵工学报 ›› 2017, Vol. 38 ›› Issue (8): 1498-1505.doi: 10.3969/j.issn.1000-1093.2017.08.006

• 论文 • 上一篇    下一篇

钨球对柱面带壳装药的冲击起爆数值模拟研究

王昕, 蒋建伟, 王树有, 李梅   

  1. (北京理工大学 爆炸科学与技术国家重点实验室, 北京 100081)
  • 收稿日期:2017-01-10 修回日期:2017-01-10 上线日期:2017-10-10
  • 作者简介:王昕(1990—),女,博士研究生。E-mail:bitwangxin@bit.edu.cn

Numerical Simulation on the Initiation of Cylindrical Covered Charge Impacted by Tungsten Sphere Fragment

WANG Xin, JIANG Jian-wei, WANG Shu-you, LI Mei   

  1. (State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, China)
  • Received:2017-01-10 Revised:2017-01-10 Online:2017-10-10

摘要: 采用AUTODYN-3D数值软件,开展了钨球与不同曲率半径柱面带钢壳Comp B炸药作用过程的数值模拟。分析了钨球撞击位置对炸药冲击起爆特性的影响,采用升降法获得柱面带壳装药的临界冲击起爆速度。结果表明:柱面带壳装药冲击起爆过程与平面带壳装药相一致,炸药起爆点发生在离炸药和壳体界面一定距离处,且随着速增加而越靠近交界面;相同条件下柱壳装药更易于起爆,其临界起爆速度随装药曲率半径r增加呈现非线性增大,碰撞点偏移量δ=0时,r=∞的临界起爆速度较r=40 mm时增加3.2%;随偏移量δ的增大呈现指数增加,r=40 mm时,δ=0.94r的临界起爆速度较δ=0时增加35.6%,较平面带壳装药增加31.5%.

关键词: 兵器科学与技术, 柱面带壳装药, 起爆点, 临界起爆速度

Abstract: The interaction of tungsten fragment and cylindrical covered charge with different curvature radius is simulated by using AUTODYN-3D software. The influence of impacting position of fragment on the detonation characteristics of explosive is analyzed, and the “up-down” method is used to obtain the critical detonation velocity. The results show that the impact initiation progress of cylindrical covered charge coincides with that of plane covered charge. The detonation point is at a certain distance from the interface between explosive and casing, and gradually approaches to the interface as the fragment impact velocity increases. The cylindrical covered charge is easy to detonate under the same condition, and its critical detonation velocity increases nonlinearly with the increase in curvature radius. For collision point offset δ=0, the critical detonation velocity is increased by 3.2% for infinite curvature radius r=∞ compared with that for r=40 mm; the critical detonation velocity increases exponentially with the increase in offset δ. For r=40 mm, the critical detonation velocity for δ=0.94r is increased by 35.6% and 31.5% compared to that for δ= 0 and plane covered charge, respectively. Key

Key words: ordnancescienceandtechnology, cylindricalcoveredcharge, detonationpoint, criticaldetonationvelocity

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