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Aluminum Acceleration and Reaction Characteristics for Aluminized CL-20-Based Mixed Explosives

机译:铝化Cl-20的混合炸药铝加速度和反应特性

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摘要

The effects of aluminum mass content and particle size in CL-20-based aluminized explosives were investigated with a small-scale confined plate push test. The confinement strength of the detonation products was enhanced to twice that of cylinder tests to accelerate the aluminum particle reaction. An all-fiber displacement interferometer system for any reflector was used to continuously measure the plate velocity over time. A series of aluminized explosives containing various aluminum particle masses and sizes were tested, as well as explosives containing LiF instead of aluminum. Numerical simulations of explosive detonation and metal plate acceleration were performed, where parameters for the equation of state of the detonation products were calibrated by comparing the results with experiment. The results indicated that most of the aluminum particles (including 200-nm diameter particles) reacted with the detonation products after the Chapman-Jouguet point. Moreover, the released energy from the reaction could further accelerate the metal plate and increase the acceleration time, although the initial plate velocity was reduced. The start reaction times of small particles were earlier than that of larger particles. Specifically, 2-50-m aluminum particles start to react when the volume of detonation products expanded to 1.24 times the initial volume, while the 200-nm particles start to react at 1.07 times the initial volume, with a significantly higher reaction rate. The reaction rates decreased with increasing mass fraction of reacted aluminum and a decrease in pressure.
机译:采用小规模限制板推动试验研究了铝质量含量和粒度在Cl-20的铝化炸药中的影响。爆炸产物的限制性强度增强至圆柱试验的两倍,以加速铝颗粒反应。用于任何反射器的全纤维位移干涉仪系统用于随着时间的推移连续测量板速度。测试了一系列含有各种铝颗粒质量和尺寸的铝化炸药,以及含有LiF而不是铝的炸药。进行了爆炸性爆炸和金属板加速的数值模拟,其中通过将结果与实验进行比较来校准用于爆炸产物状态方程的参数。结果表明,大多数铝颗粒(包括200纳米直径颗粒)与在查普曼 - jouguet点之后与爆炸产物反应。此外,来自反应的释放能量可以进一步加速金属板并增加加速时间,尽管初始板速度降低。小颗粒的开始反应时间比较大的颗粒更早。具体地,当爆轰产物的体积扩大到初始体积的1.24倍时,2-50m-M铝颗粒开始反应,而200-NM颗粒开始在初始体积的1.07倍下反应,反应速度显着更高。随着反应铝的质量分数的增加和压力降低,反应速率降低。

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