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首页> 外文期刊>Russian journal of physical chemistry, B. >Macrokinetics of decomposition of loose packed RDX in shock and detonation waves
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Macrokinetics of decomposition of loose packed RDX in shock and detonation waves

机译:冲击波和爆轰波中散装RDX分解的宏观动力学

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The boundary retardation method was used to study the decomposition of loose packed density RDX behind the front of shock waves with amplitudes ranges from values critical for reaction initiation to those typical of detonation. The threshold pressure P* and temperature T* at which the transition from a relatively slow decomposition in hotspots to fast bulk conversion occurs. It was demonstrated that this transition is associated with a change in the macrokinetics of the conversion of HE material behind the shock front. At pressures below P*, an analogy with the kinetic regularities of the thermal decomposition of RDX at normal pressure is observed. At P > P*, the conversion occurs in the regime of an adiabatic thermal explosion at a very high rate and has no analogues in chemical kinetics. The normal detonation regime is realized at P > P*. It was shown that the macrokinetic characteristics of normal detonation cannot be described within the framework of traditional approaches, with the help of the Arrhenius law or the concept of deflagration propagating from hotspots.
机译:边界延迟法被用来研究在冲击波前的松散堆积密度RDX的分解,其幅度范围从反应开始的临界值到爆炸的典型值。发生阈值压力P *和温度T *,从热点的相对缓慢的分解转变为快速的本体转换。结果表明,这种转变与激波前沿后面的HE材料转换的宏观动力学变化有关。在低于P *的压力下,可以观察到RDX在常压下热分解的动力学规律。在P> P *时,转化率以很高的速率发生在绝热热爆炸中,并且在化学动力学上没有类似物。在P> P *时实现正常的爆轰状态。结果表明,借助于阿伦尼乌斯定律或从热点传播的爆燃概念,无法在传统方法的框架内描述正常爆炸的宏观动力学特征。

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