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Enhanced Initiation Behavior of Reactive Material Projectiles Impacting Covered Explosives

机译:影响爆炸物的反应材料射弹的增强初始行为

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Reactive materials bring the dramatically enhanced lethality by means of the combined defeat mechanisms of impact kinetic energy and chemical energy release. This paper presents such an investigation on these reactive materials for the enhanced initiation behavior of covered explosives. First, a simple initiation process comparison between the inert metal and reactive material projectiles impacting covered explosives is described. Then high velocity ballistic impact experiments, which include both reactive material and tungsten alloy projectiles with mass matched against covered explosives, are conducted to investigate and compare the initiation behavior of covered explosives. Finally, theoretical analysis and discussions about contributions of both kinetic energy-to-initiation and chemical energy-to-initiation mechanisms to the enhanced initiation behavior of covered explosives impacted by reactive materials are presented.
机译:反应材料通过混合动能和化学能源释放的联合失败机制来引起大幅增强的致命性。 本文提出了对这些反应性材料的调查,用于增强覆盖爆炸物的增强初始行为。 首先,描述了惰性金属和反应材料射弹影响覆盖爆炸物之间的简单启动过程比较。 然后,具有高速弹性冲击实验,包括反应材料和钨合金射弹,以对覆盖的炸药匹配,以研究涵盖炸药的起始行为。 最后,提出了关于动力学能源对促进能源对促进爆炸物的增强爆炸物的增强爆炸物的贡献的理论分析和讨论。

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