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Research on the necking effect of pulse current on Shaped-charge Jet in passive electromagnetic armor

机译:脉冲电流对无源电磁铠装的脉冲电流颈缩效应的研究

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When Shaped-charge Jet (SCJ) penetrates front armor and approach to back armor, powerful pulse current flows it immediately and produces θ magnetic field simultaneously. Due to the effect of electromagnetic force F = J × B, the necking of SCJ occurs and leads to the breakup of SCJ into individual fragments and the penetration capability of SCJ is decreased significantly. In this paper, in order to improve defense capability of the passive electromagnetic armor against SCJ, the necking mechanism of the high-temperature SCJ is studied through Maxwell's equations and elastic-plastic constitutive equations. A 3-D simulation model, supposed to be sine-disturbance and axial-symmetry, is developed to analyze the necking law of SCJ through electromagnetic-structure co-simulation. Take the skin-effect of pulse current into account, the distribution of current density, magnetic field, magnetic force and stress field are obtained through electromagnetic-structure co-simulation by finite element software, and the SCJ deformation is also calculated. The results indicate that, a powerful pulse current can accelerate the break-up of SCJ. At last, defense experiments of the passive electromagnetic armor against SCJ with high explosive anti-tank cartridge proceeded. The results demonstrate that, the penetration capability of SCJ with pulse current is lower than that without pulse current, and the penetration capability of SCJ declines remarkably with the increasing of charging voltage.
机译:当成形射流(SCJ)穿透前臂并接近后盔甲时,强大的脉冲电流立即流动并同时产生θ磁场。由于电磁力F = J×B的效果,SCJ的颈缩发生并导致SCJ的分解成单个片段,并且SCJ的穿透能力显着降低。在本文中,为了改善被动电磁铠装对SCJ的防御能力,通过Maxwell的方程和弹性塑性构成方程研究了高温SCJ的缩颈机构。开发了一种三维仿真模型,应该是正弦扰动和轴对称性,通过电磁结构共模分析SCJ的缩颈法。采取脉冲电流的肌肤效果考虑,通过有限元软件通过电磁结构共模,通过电磁结构共模,计算电流密度,磁场,磁力和应力场的分布,并且还计算了SCJ变形。结果表明,强大的脉冲电流可以加速SCJ的断开。最后,采用高爆炸防坦克盒对抗SCJ的被动电磁铠装的防御实验。结果表明,具有脉冲电流的SCJ的穿透能力低于没有脉冲电流的渗透能力,并且SCJ的穿透能力随着充电电压的增加而显着下降。

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