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A double-front structure of detonation wave as the result of phase transitions

机译:相变导致爆轰波的双前结构

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摘要

Using thermochemical code calculations, we show that the nanographite-nanodiamond phase transition, which may occur in the detonation products of a number of carbon containing explosives, can affect the detonation properties and can cause a specific detonation regime with some unusual peculiarities. Among them, we first note the failure of the Chapman-Jouguet condition and the presence of the sonic plane, where the Mach number is equal to unity, in a detonation product expansion wave at a lower pressure than that at the Chapman-Jouguet point. The peculiarities of this detonation regime are demonstrated by the example of TNT, HNS, and RDX. The computed detonation velocities are in excellent agreement with experiments over a wide range of initial charge densities for all of the investigated explosives. The results of this work allow one to explain, e.g., contradictory experimental data on the detonation pressure and on the length of the reaction zone for TNT. We believe that some other solid-solid, solid-liquid, and liquid-liquid phase transformations in the detonation products may also cause a detonation regime with the same features as shown here for the nanographite-nanodiamond transition. We suggest a computational study that should facilitate proposing detonation experiments strongly arguing in favor of the model presented.
机译:使用热化学代码计算,我们表明,可能在多种含碳炸药的爆炸产物中发生的纳米石墨-纳米金刚石相变会影响爆炸特性,并可能导致特殊的爆炸方式,并具有一些特殊的特性。其中,我们首先注意到,在比起Chapman-Jouguet点更低的压力下的爆轰产物膨胀波中,Chapman-Jouguet条件的失败和马氏数等于1的声平面的存在。通过TNT,HNS和RDX的例子证明了这种爆炸方式的特殊性。所计算的爆炸速度与所有被调查炸药在很宽的初始装药密度范围内的实验均非常吻合。这项工作的结果使人们能够解释例如关于爆破压力和TNT反应区长度的矛盾实验数据。我们认为,爆轰产物中的其他一些固-固,固-液和液-液相转变也可能引起具有与此处所示的纳米石墨-纳米金刚石转变相同特征的爆轰机制。我们建议进行一项计算研究,该研究应有助于提出引爆实验,强烈建议采用所提出的模型。

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