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Post-Detonation Combustion of Aluminum Particles: Aluminum Particle Size Dependence

机译:铝颗粒后爆炸燃烧:铝粒度依赖性

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Small-scale detonation experiments were conducted to investigate the post-detonation reactivity of a fuel-rich, aluminized plastic bonded explosive. The particle size of the fuel in the explosive charge varied from 1 to 120 μm. Effective burning times are extracted from time-resolved emission spectroscopy measurements of the expanding blast wave, with aluminum monoxide acting as the primary indicator of the presence of aluminum combustion. Burning times increased with particle size, much like the trends observed in standard combustion experiments. However, the burning times measured in the explosive environment are up to two orders of magnitude shorter in time. Optical pyrometry and high-speed digital images accompany this set of streak emission spectroscopy measurements.
机译:进行了小规模的爆轰实验,以研究富含燃料,铝化粘结炸药的爆炸后反应性。爆炸性电荷中燃料的粒度从1〜120μm变化。从膨胀爆发波的时分发射光谱测量中提取有效的燃烧时间,用铝一氧化铝作用作为铝燃烧存在的主要指示器。燃烧时间随粒径而增加,就像在标准燃烧实验中观察到的趋势一样。然而,在爆炸性环境中测量的燃烧时间最多可及时短两个数量级。光学热测定和高速数字图像伴随了这组条纹发射光谱测量。

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