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Miro-hotspot model for the laser initiation of explosive decomposition of energetic materials with melting taken into account

机译:考虑了熔化时激光引发高能材料爆炸分解的Miro-hotspot模型

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In this paper, we study a micro-hotspot model for the laser initiation of explosive decomposition taking into account the melting of the matrix of the energetic material and the nanometallic inclusion contained in its volume. The heating features of the nanoparticle in an inert matrix are investigated, and the dependence of the maximum temperature on the surface of the inclusion on its radius is constructed. It is shown that melting leads to a reduction in the maximum heating temperature and a slight change in the radius of the most heated nanoparticle. The dependences of the critical initiation energy density of explosive decomposition of pentaerythritol tetranitrate (PETN) with aluminum nanoparticles on the inclusion radius with and without melting are calculated. With melting taken into account, the model gives higher critical initiation energy density of explosive decomposition. In the case of inclusions of large radius, the formation of the reaction site of explosive decomposition occurs before complete melting of the metal inclusion, which results in solidification of the melt during the induction period.
机译:在本文中,我们考虑到高能材料基质和其体积中包含的纳米金属夹杂物的熔化,研究了用于爆炸爆炸激光激发的微热点模型。研究了惰性基质中纳米粒子的加热特征,并构建了夹杂物表面上的最高温度对其半径的依赖性。已经表明,熔化导致最高加热温度的降低和最加热的纳米颗粒的半径的轻微变化。计算了在熔融和不熔融条件下,季戊四醇四硝酸盐(PETN)与铝纳米粒子爆炸分解的临界起始能密度与夹杂物半径的关系。考虑到融化,模型给出了爆炸分解的更高的临界起爆能量密度。在大半径夹杂物的情况下,爆炸分解反应部位的形成发生在金属夹杂物完全熔化之前,这导致在诱导期间熔体凝固。

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