首页> 外文期刊>Zeitschrift fur Anorganische und Allgemeine Chemie >Assessment of Thermal Stability and Detonation Performance of 4-Amino-1,2,4-triazolium Nitrate as compared to 2,4,6-Trinitrotoluene for Melt-cast Explosives
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Assessment of Thermal Stability and Detonation Performance of 4-Amino-1,2,4-triazolium Nitrate as compared to 2,4,6-Trinitrotoluene for Melt-cast Explosives

机译:与2,4,6-三硝基甲苯相比,评估4-氨基-1,2,4-三唑酸铵的热稳定性和爆轰性能,相比熔喷炸药的2,4,6-三硝基甲苯

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摘要

4-Amino-1,2,4-triazolium nitrate (4-ATN) is an energetic and non-sensitive ionic liquid, which was introduced as a good candidate in previous works for the replacement of 2,4,6-trinitrotoluene (TNT) in melt-cast explosives. Since previous studies used pure nitric acid for nitration of 4-ATN, the effect of the use of low price industrial nitric acids (50%, 70% and 98%) is investigated on the percent yields of 4-ATN. The thermogravimetric and differential scanning calorimetry (TGA/DSC) are done on the synthesized 4-ATN with impure nitric acid at a heating rate of 10 K·min–1 by the vacuum system. The obtained TGA/DSC curves confirm decomposition of 4-ATN involving melting and dissociation. Derivative thermogravimetric (DTG) curves of 4-ATN at various heating rates are applied to obtain activation energy of thermolysis by several model-free techniques. The calculated activation energies are in the range 78.7–87.7 kJ·mol–1, which are about 10 kJ·mol–1 more than the reported activation energy of industrial TNT (purity 98.2 %), i.e. 66–70 kJ·mol–1. Assessments of detonation performance of 4-ATN are also compared with TNT, which show higher detonation performance of 4-ATN. Thus, 4-ATN can be used with nitramine compounds as melt-cast explosives with higher thermal stability and detonation performance than corresponding nitramine compound/TNT explosives.
机译:4-氨基-1,2,4-三唑鎓(4-ATN)是一种能量和非敏感的离子液体,其作为先前作品中的良好候选者引入了2,4,6-三硝基甲苯(TNT )在熔融铸造炸药中。由于先前的研究使用了纯硝酸的硝酸4-ATN,因此研究了低价格工业硝酸的效果(50%,70%和98%),以4-ATN的百分比。在真空系统上以10k·min-1的加热速率,在合成的4-ATN上在合成的4-ATN上进行热重算和差示扫描量热法(TGA / DSC)。所获得的TGA / DSC曲线确认4-ATN的分解涉及熔化和解离。衍生热重量(DTG)以各种加热速率为4-ATN的曲线被应用于通过几种无模型技术获得热解的活化能量。计算的激活能量为78.7-87.7 kJ·mol-1,大约10kj·mol-1大于报告的工业TNT的激活能量(纯度98.2%),即66-70 kj·mol-1 。与TNT相比,4-ATN的爆炸性能评估也比TNT进行了比较,显示出4-ATN的更高的爆轰性能。因此,4-ATN可以与硝胺化合物一起使用,作为熔体铸型爆炸物,其热稳定性较高,爆轰性能比相应的硝基化合物/ TNT爆炸物更高。

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