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RDX and TNT residues from live-fire and blow-in-place detonations

机译:实弹和现场爆炸产生的RDX和TNT残留物

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摘要

Snow was used as a collection medium to examine 1,3,5-hexahydro-1,3,5-trinitrotriazine (RDX) and 2,4,6-trinitro-toluene (TNT) residues post-detonation of 60-, 81-, and 120-mm mortar rounds, 105- and 155-mm howitzer rounds, M67 hand grenades, 40-mm rifle grenades, and blocks of C4. Residue-covered snow samples were collected, processed, and analyzed for explosives without cross-contamination from previous detonations and other potential matrix interferences. Detonation trials were performed following standard military live-fire and blow-in-place techniques. When possible, replicate munitions were detonated under similar conditions to provide a more reliable estimation of the mass of unconsumed high explosive residues. Overall the amount of energetic residues deposited from live-fire detonations were considerably less than the energetic residues deposited by blow-in-place detonations.
机译:使用雪作为收集介质,以检查60-,81-爆炸后的1,3,5-六氢-1,3,5-三硝基三嗪(RDX)和2,4,6-三硝基甲苯(TNT)残留物,120毫米迫击炮弹,105毫米和155毫米榴弹炮弹,M67手榴弹,40毫米步枪榴弹和C4块。收集,处理和分析残留有积雪的雪样,以检查爆炸物,而不会因先前的爆炸和其他潜在的基质干扰而交叉污染。爆炸试验是按照标准的军用实弹射击技术进行的。在可能的情况下,在类似条件下引爆重复弹药,以更可靠地估算未消耗的高爆炸性残留物的质量。总体而言,实弹爆炸产生的高能残留物的数量大大少于现场爆炸产生的高能残留物。

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