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Energy transfer rates and impact sensitivities of two classes nitramine explosives molecules

机译:两类硝胺炸药分子的能量传递速率和冲击敏感性

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Some explosives are stable molecules with large energy barriers to chemical reaction, and in shock or impact initiation, a sizable amount of phonon energy must be converted to the molecular internal higher vibrations by multiphonon up pumping. To investigate the relationship between impact sensitivities and energy transfer rates, the number of doorway modes of explosive molecules is estimated by a simple theory in which the rate is proportional to the number of normal mode vibrations. We evaluated frequencies of normal mode vibrations of 13 explosive molecules which are CHNO nitramine-contained and have not been analyzed previously. The number of doorway modes in the regions of 200–700 cm−1 was evaluated by the direct counting method. For more clear investigation of the relationship we have classified these 13 nitramine explosive molecules, by the number of nitramine group they contained, into two groups. There are eight molecules that contained one nitramine group and five molecules that contained poly-nitramine groups. It is found that the number of doorway modes shows a linearly correlation to the impact sensitivities derived from drop hammer tests. This result is in agreement with that of several previous works. Besides, it is also noted in our study that in those nitramine explosives molecules with similar molecular structure (similar number nitramine group they contained) and similar molecular weight, the correlation between the sensitivity and the number of doorway modes is higher. We found that the vibrational frequency of ω corresponds to nitro group motions of every molecule is contributed to the number of doorway modes in the regions of 200–700 cm−1.
机译:有些炸药是稳定的分子,具有大的化学反应能垒,在发生冲击或撞击时,必须通过多声子向上泵浦将相当数量的声子能量转换为分子内部的更高振动。为了研究冲击敏感度与能量传递速率之间的关系,通过简单的理论来估算爆炸分子的门道模式数,在该理论中,爆炸率的门道模式与正态振动的数量成比例。我们评估了13种爆炸性分子的正模振动频率,这些爆炸性分子包含CHNO硝胺,以前没有进行过分析。通过直接计数法评估了200–700 cm-1 区域的门道模式数。为了更清楚地研究这种关系,我们将这13种硝胺爆炸分子按其所含硝胺基团的数量分为两类。有八个分子含一个硝胺基,五个分子含聚硝胺基。发现门道模式的数量与从落锤测试得出的撞击灵敏度呈线性关系。这一结果与先前的几项研究结果一致。此外,在我们的研究中还注意到,在具有相似分子结构(它们包含的相似数目的硝胺基团)和相似分子量的硝胺炸药分子中,灵敏度与门道模式数量之间的相关性更高。我们发现ω的振动频率与每个分子的硝基运动相对应,这与200-700 cm-1 区域的门道模数有关。

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