Study on jet formation and penetration of double-layer sub-caliber shaped charge

Yu-Ting Wang, Q. Xiao, Zhengxiang Huang, X. Zu, B. Ma
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Abstract

The ordinary shaped charge has a low kill-radius because of its structure. In order to adapt to the different battlefields, this paper proposed the double-layer sub-caliber shaped charge, which is modified from an ordinary shaped charge with insensitive explosive appended to its outer layer. In this paper, a study of the Ø56 mm shaped charge was conducted as a benchmark case. The simulations were carried out using AUTODYN for jet formation and penetration of different axial thicknesses of additional insensitive explosive and the additional height of the charge, with the aim to obtain the optimal size of double-layer sub-caliber shaped charge. The results show that the optimum axial thickness of additional insensitive explosive is ΔR/R0 = 0.8, and the optimum size of the additional height of charge is ΔL/L0 = 0.4.
双层亚口径聚能药射流形成与侵彻研究
普通聚能药由于其结构的原因具有较低的杀伤半径。为了适应不同的战场环境,本文在普通聚能药的基础上,提出了一种外层附加不敏感炸药的双层次口径聚能药。本文以Ø56 mm聚能药为基准案例进行了研究。利用AUTODYN软件对不同轴向附加不敏感炸药厚度和装药附加高度的射流形成和侵穿进行了仿真,得到了双层亚口径聚能装药的最优尺寸。结果表明:附加不敏感炸药的最佳轴向厚度为ΔR/R0 = 0.8,附加装药高度的最佳尺寸为ΔL/L0 = 0.4。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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