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Laser-shocked energetic materials with metal additives: evaluation of chemistry and detonation performance

机译:具有金属添加剂的激光震动能量材料:化学和爆炸性能评估

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摘要

A focused, nanosecond-pulsed laser has been used to ablate, atomize, ionize, and excite milligram quantities of metal-doped energetic materials that undergo exothermic reactions in the laser-induced plasma. The subsequent shock wave expansion in the air above the sample has been monitored using high-speed schlieren imaging in a recently developed technique, laser-induced air shock from energetic materials (LASEM). The method enables the estimation of detonation velocities based on the measured laser-induced air-shock velocities and has previously been demonstrated for organic military explosives. Here, the LASEM technique has been extended to explosive formulations with metal additives. A comparison of the measured laser-induced air-shock velocities for TNT, RDX, DNTF, and LLM-172 doped with Al or B to the detonation velocities predicted by the thermochemical code CHEETAH for inert or active metal participation demonstrates that LASEM has potential for predicting the early time (< 10 mu s) participation of metal additives in detonation events. The LASEM results show that while Al is mostly inert at early times in the detonation event (confirmed from large-scale detonation testing), B is active-and reducing the amount of hydrogen present during the early chemical reactions increases the resulting estimated detonation velocities.
机译:聚焦的纳秒脉冲激光器已经用于烧蚀,雾化,电离和激发毫克金属掺杂能量材料的毫克量,该金属掺杂的能量材料在激光诱导的等离子体中进行放热反应。在最近开发的技术中使用高速Schlieren成像,从最近开发的技术,激光诱导的空气冲击,从精力充沛的材料(LASEM)中的高速Schlieren成像进行监测,在样品上方的随后的冲击波膨胀。该方法能够估计基于测量的激光诱导的空气冲击速度的爆轰速度,并先前已经证明有机军事炸药。在这里,赛马技术已经扩展到具有金属添加剂的爆炸性配方。测量的激光诱导的TNT,RDX,DNTF和LLM-172对掺杂有Al或B的LLM-172的比较,用于惰性或活性金属参与的热化学码猎物预测的爆震速度表明LASEM具有潜力预测金属添加剂在爆炸事件中的早期(<10亩)参与。 LASEM结果表明,虽然Al在爆炸事件(从大规模爆轰检测中确认)的早期惰性惰性,而B是活性的,并且在早期化学反应期间的氢气量增加,增加所得的估计的爆轰速度。

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