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Effects of Aluminum Particle Size on the Detonation Pressure of TNT/Al

机译:铝粒径对TNT / Al爆轰压力的影响

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摘要

To better understand the influence of the aluminum particle size on the detonation pressure of TNT/Al, electrical conductivity experiment and detonation pressure experiment were performed in this study. Four types of TNT/Al were considered, in which the particle size of aluminum was 50 nm, 100 nm, 1.50 mu m, and 9.79 mu m, respectively. The combustion process of Al in TNT/Al was detected by electrical conductivity experiment, and the detonation pressures of TNT/Al were measured by using the manganin pressure sensors. According to the experimental results, the Chapman Jouguet (CJ) pressure of the explosive containing nano-sized aluminum is higher than the explosive containing micron-sized aluminum powder because of the combustion of nano-sized aluminum in the detonation reaction zone. In addition, a smaller aluminum particle size in TNT/Al is associated with a slower detonation pressure attenuation. This study gives a clearer picture of how aluminum particle size contributes to detonation pressure on timescales from 0 to 0.82 mu s.
机译:为了更好地理解铝粒度对TNT / Al的爆炸压力的影响,在本研究中进行了导电实验和爆炸压力实验。考虑了四种类型的TNT / Al,其中铝的粒度分别为50nm,100nm,1.50μm和9.79μm。通过电导率实验检测到TNT / Al中Al的燃烧过程,通过使用锰膦压力传感器测量TNT / Al的爆轰压力。根据实验结果,由于纳米铝中的爆炸反应区中的纳米铝的燃烧,炸药纳米铝铝铝栓铝铝铝的压力高于爆炸性含微米尺寸的铝粉。另外,TNT / Al中的较小的铝粒度与较慢的爆震压力衰减相关。该研究提供了更清晰的铝粒度如何在0至0.82μs的时间尺寸下爆炸压力的图像。

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