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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal decomposition and thermal stability of potassium 3,3'-dinitrimino-5,5'-bis(1H-1,2,4-triazole)
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Thermal decomposition and thermal stability of potassium 3,3'-dinitrimino-5,5'-bis(1H-1,2,4-triazole)

机译:钾的热分解和热稳定性3,3'-二二硝基纤维-5,5'-BIS(1H-1,2,4-三唑)

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摘要

Potassium 3,3'-dinitrimino-5,5'-bis(1H-1,2,4-triazole) (K(2)DNABT), a new potential green primary explosive, was synthesized and characterized by IR spectroscopy, multinuclear NMR spectroscopy and single-crystal X-ray diffraction. The thermal decomposition and thermal stability of K(2)DNABT were investigated by the thermogravimetric differential thermal analysis and accelerating rate calorimeter. The thermal decomposition kinetic parameters (apparent activation energy and pre-exponential factor) under non-isothermal condition were calculated by Starink method. The initial decomposition temperature (T (p0)) and critical temperature of thermal explosion (T (bp0)) were calculated as 279.06 and 298.53 A degrees C, respectively. The apparent activation energy and pre-exponential factor under adiabatic condition were also calculated. The self-heating decomposition started at 280.46 A degrees C and ended at 295.42 A degrees C, within the time span of 162.50 min. The self-accelerating decomposition temperature (T (SADT, 50kg)) was calculated as 276.55 A degrees C. The detonation velocity (7.59 km s(-1)) and pressure (27.84 GPa) of K(2)DNABT were evaluated by Kamlet-Jacob equations. The superior calculated energetic performance shows that it can be considered as a potential candidate of lead-based primary explosives.
机译:钾3,3'-二硝基纤维-5,5'-BIS(1H-1,2,4-三唑)(K(2)DNABT),通过IR光谱合成并表征了一种新的潜在的绿色初级炸药,多核NMR光谱学和单晶X射线衍射。通过热重分差分热分析和加速速率量热计研究了K(2)DNABT的热分解和热稳定性。通过溴化方法计算非等温条件下的热分解动力学参数(表观激活能量和预指数因子)。初始分解温度(T(p0))和热爆炸(T(bp0))的临界温度分别计算为279.06和298.53 A℃。还计算了绝热条件下的表观活化能量和预指数因素。自加热分解在280.46℃下开始,并在162.50分钟的时间跨度内以295.42℃。将自加速分解温度(T(SADT,50kg))计算为276.55 A℃。通过KAMLET评估爆炸速度(7.59km S(-1))和K(2)DNABT的压力(27.84GPa) -Jacob方程。卓越的计算能量性能表明,它可以被视为潜在的基于铅的主要炸药候选者。

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