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Numerical Simulation of Tandem Shaped Charge Penetrating Armored Target under Explosive Loading

机译:爆炸性载荷下串联电荷穿透铠装靶的数值模拟

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Tandem shaped charge is one of the hotspots in the research of antiarmor ammunition at present, but because of the shortcoming that the front-stage jet penetrates and detonates ERA (Explosive Reactive Armor), then it will affect the rear-stage jet to penetrate the main armor. Our research team proposes that the front charge of the tandem shaped charge can be designed as a low-density material charge liner so that the front-stage low-density jet can penetrate a small hole in the reactive armor without detonating. The rear-stage main charge forms a main jet through the small hole to penetrate the main armor. In this article, the damage of tandem shaped charge to armored target is studied when copper and new modified PTFE (polytetrafluoroethylene) materials are used as front-stage charge liner, and the numerical simulation results are verified by experiments. The numerical results show that the Cu (copper) jet formed by tandem shaped charge of double-copper material has strong impact performance. The interlayer explosive in reactive armor is detonated in the process of penetrating reaction armor, which weakens the penetration ability of the main rear-jet. However, the interlayer explosive in the reactive armor is not detonated during the penetration of the double-material tandem shaped charge. The front-stage modified PTFE jet and the rear-stage main jet are not affected by the explosion loading before penetrating the main armor. The experimental results show that the double-material tandem shaped charge overcomes the shortcoming of the influence of the front-stage explosion, and the penetration depth of the main armor reaches 703?mm, which is 14.3% higher than the penetration ability of the double-copper tandem shaped charge, which is basically consistent with the numerical simulation results. It provides a reference for improving the damage ability of tandem shaped charge to armored target.
机译:Tandem Charge是目前抗真人弹药研究中的热点之一,但由于前级喷射渗透和引爆时代(爆炸性反应盔甲)的缺点,那么它将影响后级射流穿透主盔甲。我们的研究团队提出了串联形电荷的前电荷可以设计为低密度材料电荷衬垫,使得前级低密度喷射可以在不引爆的情况下穿透反应式装甲中的一个小孔。后级主电荷通过小孔形成主喷射,以穿透主盔甲。在本文中,研究了铜和新型改性的PTFE(聚四氟乙烯)材料作为前级电荷衬里时,研究了对装甲靶标的串联电荷的损伤,并且通过实验验证了数值模拟结果。数值结果表明,通过双铜材料的串联形状电荷形成的Cu(铜)射流具有强烈的冲击性能。反应铠装的中间层爆炸在穿透反应铠装的过程中爆炸,这削弱了主后射流的渗透能力。然而,在双层串联电荷的渗透期间,在反应性铠装中的中间层爆炸性不会引爆。前级改性PTFE射流和后级主射流不受爆炸负载在穿透主盔甲之前的影响。实验结果表明,双层串联形电荷克服了前级爆炸的影响的缺点,主盔甲的渗透深度达到703Ωmm,比双倍的渗透能力高14.3%用于串联形状的电荷,基本上与数值模拟结果一致。它提供了改善串联电荷对装甲目标的损伤能力的参考。

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