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Explosives Signatures and Analysis

机译:炸药签名和分析

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摘要

The challenge of sampling explosive materials for various high threat military and civilian operational scenarios requires the community to identify and exploit other chemical compounds within the mixtures that may be available to support stand-off detection techniques. While limited surface and vapor phase characterization of IEDs exist, they are insufficient to guide the future development and evaluation of field deployable explosives detection (proximity and standoff) capabilities. ECBC has conducted a limited investigation of three artillery ammunition types to determine what chemical vapors, if any, are available for sensing; the relative composition of the vapors which includes the more volatile compounds in munitions, i.e., plastersizers and binders; and the sensitivity needed detect these vapors at stand-off. Also in partnership with MIT-Lincoln Laboratory, we performed a background measurement campaign at the National Training Center to determine the baseline ambient amounts and variability of nitrates and nitro-ester compounds as vapors, particulates, and on surfaces; as well as other chemical compounds related to non-energetic explosive additives. Environmental persistence studies in contexts relevant to counter-IED sensing operations, such as surface residues, are still necessary.
机译:在各种高威胁军事和民用作战场景中对爆炸性材料进行采样的挑战要求社区识别和利用混合物中可用于支持对峙检测技术的其他化学化合物。尽管简易爆炸装置的表面和气相特征有限,但不足以指导未来可现场部署爆炸物探测(近距离和对峙)能力的开发和评估。 ECBC已对三种火炮弹药进行了有限的调查,以确定可用于感测的化学蒸气(如有);蒸气的相对组成,其中包括弹药中挥发性更大的化合物,即石膏化剂和粘合剂;并且所需的灵敏度可以在对峙时检测到这些蒸气。此外,我们还与麻省理工学院林肯实验室合作,在国家培训中心进行了背景测量活动,以确定基线环境量以及硝酸盐和硝基酯化合物的蒸气,颗粒物和表面上的变异性;以及其他与非高能爆炸性添加剂有关的化合物。与反IED感应操作有关的环境持久性研究(例如表面残留物)仍然是必要的。

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