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THERMAL DECOMPOSITION KINETICS OF HMX

机译:HMX的热分解动力学

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摘要

Nucleation-growth kinetic expressions are derived for thermal decomposition of HMX from a variety of types of data, including mass loss for isothermal and constant rate heating in an open pan, and heat flow for isothermal and constant rate heating in open and closed pans. Conditions are identified in which thermal runaway is small to nonexistent, which typically means temperatures less than 255℃ and heating rates less than 1℃/min. Activation energies are typically in the 140 to 165 kJ/mol regime for open pan experiments and about 150-165 kJ/mol for sealed-pan experiments. The reaction clearly displays more than one process, and most likely three processes, which are most clearly evident in open pan experiments. The reaction is accelerated for closed pan experiments, and one global reaction fits the data fairly well. Our A-E values lie in the middle of the values given in a compensation-law plot by Brill et al. (1994). Comparison with additional open and closed low temperature pyrolysis experiments support an activation energy of 165 kJ/mol at 10% conversion.
机译:HMX的热分解的成核生长动力学表达式来自多种类型的数据,包括在开放式平底锅中等温和恒定速率加热下的质量损失,以及在开放式和封闭型平底锅中进行恒温和恒定速率加热的热流。可以识别出热失控很小甚至不存在的情况,这通常意味着温度低于255℃,加热速率低于1℃/ min。对于平底锅实验,活化能通常为140至165 kJ / mol,对于密闭锅实验,活化能约为150-165 kJ / mol。该反应清楚地显示了一个以上的过程,并且很可能显示了三个过程,这在平底锅实验中最明显。对于封闭的平底锅实验,可以加快反应速度,并且一个全局反应可以很好地拟合数据。我们的A-E值位于Brill等人在补偿律图中给出的值的中间。 (1994)。与其他开放式和封闭式低温热解实验的比较表明,转化率为10%时活化能为165 kJ / mol。

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