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KINETIC STUDIES OF THE THERMAL DECOMPOSITION OF KDNBF, A PRIMER FOR EXPLOSIVES

机译:KDNBF热分解动力学研究,爆炸物底漆

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KDNBF (potassium 4, 6 - dinitrobenzofuroxan) has been used as a primer explosive in igniters and detonators for many years. Considerable information about the sensitivity of KDNBF to various stimuli, such as impact, friction, shock and electrostatic charge, is known. However, the thermal sensitivity of KDNBF has been relatively unexplored. Hence, there is very little information available concerning the fundamental thermal properties of KDNBF. Therefore, as part of an extensive thermal hazard assessment, DSC, TG, accelerating rate calorimetry (ARC) and heat flux calorimetry (HFC) measurements have been undertaken on KDNBF. The results demonstrate that KDNBF decomposes via a multi-step exothermic process directly from the solid state. The decomposition process does not appear to depend on the nature of the atmosphere, except in the final stage of the TG decomposition in air, where remaining carbonaceous material is converted to CO_2. The first stage of the decomposition is sufficiently rapid that ignition occurs if too large a sample is used. Dynamic and isothermal methods were used to obtain the kinetic parameters and a range of activation energies were obtained, depending on the experimental conditions. The kinetic results have been analyzed in terms of various solid state decomposition models.
机译:KDNBF(钾4,6 - DinitroBenzofuroxan)已被用作点火器和雷管的底漆多年。有关KDNBF对各种刺激的敏感性的相当大的信息,例如冲击,摩擦,冲击和静电电荷,是众所周知的。然而,KDNBF的热敏性相对较为未探索。因此,有很少的信息有关KDNBF的基本热性质的信息。因此,作为广泛的热危害评估的一部分,在KDNBF上进行了DSC,TG,加速率量热法(ARC)和热通量量热法(HFC)测量。结果表明,KDNBF通过直接从固态的多步放热过程分解。分解过程似乎不依赖于大气的性质,除了在空气中的Tg分解的最后阶段,其中剩余的碳质材料转化为CO_2。分解的第一阶段足够快,如果使用过大的样品,则会发生点火。使用动态和等温方法来获得动力学参数,取决于实验条件,获得了一系列活化能量。在各种固态分解模型方面已经分析了动力学结果。

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