首页> 外文会议>International Seminar on Propellants, Explosives and Pyrotechnics >Usability of Relationship between Activation Energies of Low-Temperature Thermal Decomposition and Heats of Explosion or Squares of Detonation Velocities in Study of Initiation of Energetic Materials
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Usability of Relationship between Activation Energies of Low-Temperature Thermal Decomposition and Heats of Explosion or Squares of Detonation Velocities in Study of Initiation of Energetic Materials

机译:低温热分解激活能量的可用性和能量材料启动研究中的爆炸速度的爆炸或爆炸速度平方的热量

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Activation energies of thermal decomposition of individual energetic materials, obtained under at comparable conditions, correlate with the respective detonation heats or squares of detonation velocities through a relation which reminds the Evans-Polanyi-Semenov equation (modified EPS equation). The attention is paid also to analogous relationships of the energies of electric spark, required for SO percent initiation probability. These correlations indicate that the primary fragmentation processes during low-temperature thermal decomposition or initiation by electric spark are the same as those controlling the detonation reaction. This is valid also for explosive mixtures in which one from their component determines their initiation reactivity. In this case it was stated that initiation of the detonation of explosives based on mixtures of a fuel and /or high explosive with an ammonium nitrate oxidizing system proceeds primarily through decomposition of this system. However, if mechanism of the primary thermal decomposition of the given energetic material is not identical with the primary fission in its detonation, the modified EPS equation is not valid for such system. The last statement is documented by means of the mixtures on the basis of l,3,5-trinitroso-l,3,5-triazinane (TMTA) with l,3,5-trinitro-l,3,5-triazinane (RDX), 2,4,6-trinitrotoluene (TNT) and 1,3,5-trinitrobenzene (TNB) (i. e. TNT/TMTA, TMTA/RDX, TNB/TMTA, and TNB/TMTA/RDX). It is documented that the EPS equation can be derived also from relationships between the 15N NMR chemical shifts of the nitrogen atoms of primarily leaving nitro groups and characteristics of initiation reactivities of polynitro compounds.-By means of these shifts the key atoms in reaction centers of molecules of the said compounds can be specified. On the basis of the findings presented it also has been stated that the detonation transformation itself of the energetic materials should be preceded by an induction period.
机译:在可比条件下获得的各个能量材料的热分解的激活能量与通过关系的相应爆震热或爆炸速度的平方相关,这提醒evans-polanyi-semenov方程(改进的eps方程)。还需要注意的是,所需的电火花的能量的类似关系,所以百分比开始概率。这些相关性表明,低温热分解或通过电火花发起的主要碎片过程与控制爆炸反应的相同。这也是有效的,对于爆炸性混合物,其中一个来自它们的组件的混合物决定了它们的起始反应性。在这种情况下,它表示基于燃料的混合物和硝酸铵氧化系统的爆炸性的混合物引发炸药的引发主要通过该系统的分解来进行。然而,如果给定的能量材料的主要热分解机制与引爆中的主要裂变不相同,则改进的EPS方程对这种系统无效。最后的陈述是根据L,3,5-三核酸-1,3,5-三氮醌(TMTA)的混合物,其中3,5-三硝基-1,3,5-三嗪烷(RDX ),2,4,6-三硝基甲苯(TNT)和1,3,5-三硝基苯(TNB)(即TNT / TMTA,TMTA / RDX,TNB / TMTA和TNB / TMTA / RDX)。记录在于,EPS方程也可以来自氮原子的15N NMR化学位移之间的关系,主要留下硝基基团的硝基基团和聚硝基化合物的起始倒入的特征。 - 借助于这些反应中心的关键原子转移可以指定所述化合物的分子。在提出的结果的基础上,还据说,能量材料的爆炸转换本身应在诱导期之前。

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