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Effects of Shell on Bore-center Annular Shaped Charges Formation and Penetrating into Steel Targets

机译:壳体对孔中心环形电荷形成和渗透到钢靶的影响

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摘要

Annular shaped charge can efficiently create large penetration diameter, which can solve the problem of small penetration diameter of a traditional shaped charge, and thus meeting the requirements of large penetration diameter in sonic specific situations. In this paper, the influence of five kinds shell structures, i.e. no shell, aluminum shell with thickness of 2.0 mm and steel shell with thickness of 2.0 mm, 3.0 mm and 4.0 mm, on bore-center annular shaped charges (BCASCs) formation and penetrating steel targets was investigated by numerical simulations and experiments. The numerical simulation results are in good agreement with the experimental results. The results showed that, from no shell to aluminum shell of 2.0 nun and then to steel shell of 2.0 nun, 3.0 mm and 4.0 nun for BCASCs, the diameter and radial velocity of projectile head decrease, the axial velocity of BCASC projectiles increases gradually, the penetration diameter of the targets decreases, and the penetration depth increases. The penetration diameter caused by the BCASC with no shell is the largest, being 116.0 mm (1.16D), D is the charge diameter. The penetration depth caused by the BCASC with steel shell of 4.0 mm thickness is the deepest, being 76.4 mm (0.76D).
机译:环形电荷可以有效地产生大的渗透直径,这可以解决传统形状电荷的小渗透直径的问题,从而满足声音特定情况下的渗透直径的要求。本文采用了五种壳体结构的影响,即无壳,铝壳,厚度为2.0毫米,钢壳,厚度为2.0毫米,3.0毫米和4.0毫米,在钻孔中心环形电荷(Bcascs)形成和通过数值模拟和实验研究了穿透钢靶。数值模拟结果与实验结果吻合良好。结果表明,从铝壳为2.0 Nun的铝壳,然后到钢壳2.0 nun,3.0 mm和4.0 Nun进行Bcascs,射弹头的直径和径向速度下降,Bcasc弹丸的轴向速度逐渐增加,靶的渗透直径降低,渗透深度增加。由没有壳体的Bcasc引起的渗透直径最大,是116.0mm(1.16d),d是电荷直径。由40 mm厚度为4.0毫米厚度的Bcasc引起的渗透深度是最深的,是76.4毫米(0.76D)。

著录项

  • 来源
    《Defence Science Journal》 |2020年第1期|35-40|共6页
  • 作者单位

    Beijing Inst Technol State Key Lab Explos Sci & Technol Beijing 100081 Peoples R China;

    Beijing Inst Technol State Key Lab Explos Sci & Technol Beijing 100081 Peoples R China;

    Nanyang Technol Univ 50 Nanyang Dr Singapore 637553 Singapore;

    Nanyang Technol Univ 50 Nanyang Dr Singapore 637553 Singapore;

    Beijing Inst Technol State Key Lab Explos Sci & Technol Beijing 100081 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Annular shaped charge; Shell; Numerical simulation; Penetration;

    机译:环形电荷;壳;数值模拟;渗透;

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