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Using shaped charges with a 'magnetic cut-off 'for testing anti-meteoroid shields

机译:使用成形电荷具有“磁性切断”,用于测试抗真道屏蔽

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This research is an investigation about the possibility of using shaped charges forming high-velocity metal jets to obtain high-velocity compact elements. The particular objective here is testing rocket and space technology objects for anti-meteoroid resistance. In order to "cut off" the jet head section and obtain a compact element with a velocity of 10 km/s, it is proposed to create an axial magnetic field in the shaped charge liner before its explosion. Strengthening the magnetic field in the jet formation region during the liner collapse leads to destroying the main part of the forming shaped-charge jet. This is associated with radial dispersion of its material due to the accompanying "pumping excitation" field of powerful electromagnetic forces. In this case, it is possible to maintain the jet head section at maximum velocity. The possibility of choosing an initial magnetic field intensity has been analyzed. This is done based on numerical modeling in the framework of the two-dimensional axisymmetric problem of continuum mechanics and electrodynamics, assuming ideal conductivity of the liner material. The way of doing so is that only the head section of the jet is formed normally and its subsequent sections are scattered. As calculations showed, the goal is achieved in the case of using conical shaped charge liners with apex angles of 60 degrees ... 80 degrees at induction of the magnetic field created in the liner at level of tenths of a tesla which is technically quite easy to implement.
机译:该研究是关于使用形成高速金属射流的成形电荷以获得高速紧凑型元件的可能性的研究。这里的特殊目的是测试火箭和空间技术对抗抗真道抗性。为了“切断”喷射头部分并获得具有10km / s的速度的紧凑型元件,建议在其爆炸之前在成形电荷衬里中产生轴向磁场。在衬里坍塌期间强化喷射形成区域中的磁场导致破坏成形电荷射流的主要部分。由于强大的电磁力的伴随“泵送激发”领域,这与其材料的径向分散有关。在这种情况下,可以以最大速度保持喷射头部分。已经分析了选择初始磁场强度的可能性。这是基于连续式力学和电动电动的二维轴对称问题的框架中的数值建模来完成,假设衬里材料的理想导电性。这样的方式是只有射流的头部正常形成,并且其后续部分被散射。随着计算所显示的,在使用具有60度的顶角的圆锥形电荷衬里的情况下实现了目标,在衬里在衬垫中产生的磁场的诱导在技术上非常容易地诱导实施。

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