Research on PTFE/Al reactive jet formation of shaped charge

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Abstract

During the PTFE/Al reactive shaped charge jet formation, the burst wave generated by the explosion of the explosive is sufficient to achieve the ignition conditions of the reactive materials (RMS). As a result, the RMS will react, resulting in an energy loss from the reactive jet. In order to research the forming features of PTFE/Al reactive jet and the energy loss during the jet formation, a PTFE/Al reactive liner with a diameter of 74 mm was prepared and an X-ray pulses photography experiment was performed on the jet formation. And the parameters of Johnson-Cook constitutive model of RMS were obtained through quasi-static experiments and Hopkinson pressure bar experiments. The jet formation were simulated, and the AUTODYN secondary development technology was used. The results show that the secondary development technology can intuitively show the reaction of the active material during the jet formation. The PTFE/Al reactive jet is less cohesive, its jet diameter is thicker, and the morphology is divergent. The reactive materials reacted during the PTFE/Al reactive shaped charge jet formation. And during the reactive jet formation, the inner layer of the liner collided. Therefore, most of the chemical reactions occur inside the reactive jet.
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聚能装药反应射流形成的研究
在聚四氟乙烯/铝反应性聚能射流形成过程中,炸药爆炸产生的爆发波足以达到反应材料(RMS)的点火条件。结果,RMS会发生反应,导致反应射流的能量损失。为了研究PTFE/Al反应射流的成形特征和射流形成过程中的能量损失,制备了直径为74 mm的PTFE/Al反应衬套,并对射流形成过程进行了x射线脉冲摄影实验。通过准静态实验和Hopkinson压杆实验获得了RMS的Johnson-Cook本构模型参数。采用AUTODYN二次开发技术,对射流形成过程进行了模拟。结果表明,二次显影技术可以直观地显示射流形成过程中活性物质的反应。PTFE/Al反应射流的黏结性较差,射流直径较粗,形貌发散。反应材料在聚四氟乙烯/铝反应聚能射流形成过程中发生反应。在反应射流形成的过程中,衬管的内层发生了碰撞。因此,大多数化学反应发生在反应射流内部。
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