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Measurement of Afterburning Effect of Underoxidized Explosives by Underwater Explosion Method

机译:水下爆炸法测量欠氧化炸药的再燃效果

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摘要

The afterburning effect of TNT and a desensitized hexogen RDX-Al explosive was studied in a defined gas volume under water. A double-layer container (DLC) filled with different gases (air, oxygen, and nitrogen) was used to control and distinguish the afterburning effect of explosives. After the charges in the DLC were initiated under water, the shock wave signals were collected and analyzed. It is shown that shock wave peak pressures are duly in compliance with explosion similarity law, pressure, and impulse histories for explosions in oxygen and air are greater than those recorded for explosions in nitrogen due to the afterburing reaction. Moreover, the afterburning energy was calculated. Results show that even though there is excess oxygen in the gas volume, the afterburning energy may not reach the theoretically maximum value. This result is different from that in confined explosion, where the presence of excess oxygen in the compressed gas filling a bomb leads to complete combustion of the detonation products.
机译:在一定的气体体积下,研究了TNT和脱敏的六原体RDX-Al炸药的加力效果。使用装有不同气体(空气,氧气和氮气)的双层容器(DLC)来控制和区分炸药的后燃效果。在水下引发DLC中的电荷后,收集并分析冲击波信号。结果表明,冲击波峰值压力完全符合爆炸相似定律,压力,并且由于后突反应,氧气和空气爆炸的脉冲历史大于氮气爆炸的脉冲历史。此外,计算了再燃能量。结果表明,即使气体体积中有过量的氧气,加力能量也可能不会达到理论最大值。此结果与密闭爆炸不同,密闭爆炸在充满炸弹的压缩气体中存在过量氧气,导致爆炸产物完全燃烧。

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