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Effect of electric current on the depth of penetration of shaped-charge jets into targets

机译:电流对聚能射流穿透目标的深度的影响

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This paper presents the results of experimental and numerical studies of the behavior of metallic shaped-charge jets (SCJs) through which electric current flows. The possibility of decreasing and increasing the depth of penetration of SCJs into targets is considered. The concepts are introduced of the critical current density and the ideal shape of the current pulse at which necking magnetohydrodynamic instability develops in the jet, accompanied by volume explosion of the SCJ elements at their exit from the interelectrode gap. The development of necking magnetohydrodynamic instability in the SCJ and subsequent volume explosion of the jet material lead to a reduction in the jet length and density, and as a consequence, to a decrease in the depth of SCJ penetration into the target. It has been shown that this process can be controlled by changing the electric pulse parameters. The possibility of increasing the depth of SCJ penetration into targets under conditions where the electric current flowing through the SCJ is less than the critical value is analyzed. The process of heating of SCJs of different materials (Cu, Fe, Mo, Ta, W, etc.) by the electric current flowing through them is considered. It is shown that the use of electric current to heat SCJs may be a promising approach to increase the depth of penetration of SCJs into targets.
机译:本文介绍了电流流过的金属成形电荷射流(SCJ)行为的实验和数值研究结果。考虑了减小和增加SCJ穿透目标的深度的可能性。介绍了临界电流密度和电流脉冲的理想形状的概念,在此趋势下,射流中出现颈缩磁流体动力学不稳定性,并伴随着SCJ元素在从极间间隙离开时发生体积爆炸。 SCJ中颈缩磁流体动力学不稳定性的发展以及随后射流材料的体积爆炸导致射流长度和密度的减小,并因此导致SCJ渗入目标的深度减小。已经表明,可以通过改变电脉冲参数来控制该过程。分析了在流过SCJ的电流小于临界值的条件下增加SCJ穿透目标深度的可能性。考虑通过流过它们的电流加热不同材料(Cu,Fe,Mo,Ta,W等)的SCJ的过程。结果表明,使用电流加热SCJ可能是增加SCJ渗入目标深度的一种有前途的方法。

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