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THERMAL-IGNITION AND COMBUSTION BEHAVIOR OF PYROTECHNIC COMPOSITION CONTAINING MECHANICALLY ACTIVATED COMMERCIAL Mg-Al ALLOY

机译:机械活化的商业镁铝合金的热工成分的热点火和燃烧行为

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摘要

The effect of mechanical activation of commercial Mg-Al on its thermally-initiated reactions with KClO4 under air atmosphere was investigated. Modifications of structure and morphology of Mg-Al during milling were examined by X-ray diffraction (XRD) and scanning electron microscopy (SEM). Thermogravimetry-differential scanning calorimetry (TG-DSC) analysis and light emission measurement combined with a test of combustion products indicated that KClO4/Mg-Al mixtures containing milled Mg-Al had lower ignition temperature, faster combustion rates, and more complete combustion than the mixture containing commercial Mg-Al, especially when milling time was within 4 h-12 h. This was ascribed to decrease in particle size and appearance of nano-structured surface for milled Mg-Al. On the other hand, for the mechanically activated Mg-Al, prolonging milling time up to 16 h not only caused a significant decrease in heat release during ignition reaction, but also caused decreases in combustion rates and light emission intensity of the pyrotechnic mixture. Air-passivation and more obvious preferential oxidation of Mg component in the long-time milled Mg-Al were suggested as reasons for deterioration in combustion property of the pyrotechnic composition.
机译:研究了工业化Mg-Al的机械活化对其在空气气氛下与KClO4的热引发反应的影响。通过X射线衍射(XRD)和扫描电子显微镜(SEM)检查了铣削过程中Mg-Al的结构和形态的变化。热重分析-差示扫描量热法(TG-DSC)分析和发光测量与燃烧产物测试相结合,表明含有研磨的Mg-Al的KClO4 / Mg-Al混合物比Mg-Al具有更低的着火温度,更快的燃烧速率和更完全的燃烧。含有市售Mg-Al的混合物,尤其是在研磨时间为4 h-12 h之内。这归因于磨碎的Mg-Al的粒度减小和纳米结构表面的出现。另一方面,对于机械活化的Mg-Al,延长研磨时间至16小时,不仅导致点火反应过程中的热释放显着减少,而且导致烟火混合物的燃烧速率和发光强度降低。空气钝化和长时间研磨的Mg-Al中Mg组分更明显的优先氧化被认为是烟火组合物燃烧性能下降的原因。

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