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Penetration behavior of reactive liner shaped charge jet impacting thick steel plates

机译:反应性衬里形电荷射流对厚钢板的侵彻行为

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摘要

Reactive liner shaped charge jet (RLSCJ) penetrates thick steel plate by experiments and model analysis combined. The experimental reactive material liners with a density of about 2.3 g/cm(3), composed of mass matched ratios of Al/PTFE powders, are consolidated by a cold pressing/sintering process. Four standoffs of 0.5, 1.0, 1.5, and 2.0 CD (charge diameter) are selected to conduct the penetration experiments. The experimental results show that, compared with traditional metal liner shaped charge jet against thick steel plates, a relative larger hole diameter but lower depth accompanying with fragmentation effects of penetrating steel plates are produced by RLSCJ. To understand this penetration behavior of reactive jet, an analytical model is developed to discuss the influence of initiation delay time of reactive jet and standoff on penetration depth. Analysis shows that the penetration depth strongly depends on initiation delay time of reactive jet. With increasing the initiation delay time, the penetration depth increases significantly, showing a good agreement with the experiments. Moreover, to further understand the fragmentation mechanism effect of the thick steel plates, the effective mass of reactive jet inside the penetrating hole and its deflagration-induced structural damage effect are analyzed theoretically. Prediction results fit well with the experiments, including crack generation and propagation in the thick steel plates, and the number of fragments.
机译:通过结合实验和模型分析,反应性衬里形电荷射流(RLSCJ)可以穿透厚钢板。由Al / PTFE粉末的质量匹配比例组成的,密度约为2.3 g / cm(3)的实验性反应材料衬里通过冷压/烧结工艺进行固结。选择四个间距0.5、1.0、1.5和2.0 CD(装药直径)进行穿透实验。实验结果表明,与传统的金属衬板形电荷射流对厚钢板相比,RLSCJ产生了相对较大的孔直径,较低的深度以及穿透钢板的破碎作用。为了理解反应射流的这种渗透行为,建立了一个分析模型来讨论反应射流的起始延迟时间和对峙深度对渗透深度的影响。分析表明,穿透深度在很大程度上取决于反应射流的启动延迟时间。随着引发延迟时间的增加,渗透深度显着增加,与实验结果吻合良好。此外,为了进一步理解厚钢板的碎裂机理效应,从理论上分析了贯穿孔内反应射流的有效质量及其爆燃引起的结构破坏效应。预测结果与实验非常吻合,包括厚钢板中裂纹的产生和扩展以及碎片的数量。

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