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Damage Mechanism of PTFE/Al Reactive Charge Liner Structural Parameters on a Steel Target

机译:钢靶PTFE / Al反应电荷衬里结构参数的损伤机理

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摘要

The incorporation of reactive material damage element technology in ammunition warheads is a research hotspot in the development of conventional ammunition. The research results are of great significance and military application value to promote the development of high-efficiency damage ammunition technology. In this paper, we aimed to understand the behavior of the reactive jet and its damage effect on a steel target by undertaking theoretical analysis, numerical simulation, and experimental research. We studied the influence of structural and material parameters on the shape of the reactive jet based on autodyn-2d finite element simulation software, and the formation behavior of the reactive jet was verified using a pulsed X-ray experiment. By studying the combined damage caused by the steel target penetrating and exploding the reactive jet, the influence of the structural and performance parameters, and the explosion height of the reactive jet liner on the damage effect to the steel target was studied. A static explosion experiment was carried out, and the optimal structural and performance parameters for the reactive material and explosion height of the reactive jet liner were obtained.
机译:在弹药弹头中的反应材料损伤元件技术掺入是在传统弹药的发展中的研究热点。研究结果具有重要意义和军事应用价值,以促进高效损坏弹药技术的发展。在本文中,我们旨在通过承担理论分析,数值模拟和实验研究来了解反应射流及其损伤对钢靶的行为。我们研究了基于Autodyn-2d有限元模拟软件的反应性射流形状对结构和材料参数的影响,并且使用脉冲X射线实验验证了反应射流的形成行为。通过研究由钢目标渗透和爆炸反应性射流引起的组合损坏,研究了结构和性能参数的影响,以及反应性射流衬里对钢靶损伤效果的爆炸高度。进行了静电爆炸实验,得到了反应性射流衬里的反应材料和爆炸高度的最佳结构和性能参数。

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