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Gas vs. Condensed Phase Reactions in Nano-Thermites

机译:纳米铝酸盐中的气相与冷凝相反应

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Explosive formulations incorporating aluminum nano particles as a fuel has been extensively studied due to their low diffusion length scales and their high specific energy release compared to traditional organic formulations. In this work we evaluate the combustion product particle size distribution of nanothermites, and deduce some controlling combustion mechanisms. The results presented here show two distinct particle product distributions common to all fuel/oxidizer foumations evalauted. These two distribution contain a nanoparticle and supermicron product. From mass analysis we determine that ~90% of the product mass is comprised of the large particle population. Simple scaling arguments show that the large population cannot be formed from the vapor given the available residence time. This result implies that the majority of reaction and thus the energy release must occur in the condensed phase.
机译:与传统的有机配方相比,掺铝纳米颗粒作为燃料的炸药配方因其扩散长度小,释放的比能高而得到了广泛的研究。在这项工作中,我们评估了纳米导热膏的燃烧产物粒径分布,并推论出一些可控的燃烧机理。此处给出的结果表明,对所有燃料/氧化剂泡沫通用的两种截然不同的颗粒产物分布。这两个分布包含纳米颗粒和超微米产品。通过质量分析,我们确定约90%的产品质量由大颗粒组成。简单的比例论证表明,在可利用的停留时间的情况下,无法从蒸气中形成大量的人口。该结果暗示大部分反应以及因此的能量释放必须发生在冷凝相中。

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