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Ignition and combustion behavior of mechanically activated Al-Mg particles in composite solid propellants

机译:机械活化的铝镁颗粒在复合固体推进剂中的燃烧特性

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Metallized propellants typically produce large agglomerates that result in two-phase flow losses. Tailoring composite metal fuel particles can improve ignition and combustion characteristics while reducing product droplet sizes. In this work, mechanically activated (MA) aluminum (Al) and magnesium (Mg) powders are synthesized, characterized and compared to magnalium (Mag) alloy, neat Al, neat Mg and their physical mixtures (PM) at the same 1:1 mass ratio as MA and Mag powders. CO2 laser ignition tests showed that the MA powders are more reactive than those of Mag and exhibit particle fragmentation upon ignition. Mag powders only show fragmentation and microexplosions at high heating rates. The burning rates of the ammonium perchlorateihydroxyl-terminated polybutadiene composite propellants containing MA powders were the highest, compared to Mag, neat Al, PM and neat Mg in decreasing order. High-speed imaging of the propellants and product collection showed that MA, Mg and Mag powders produce much smaller agglomerates than neat Al or PM at lower pressures due to fragmentation and Mg vaporization. However, the microexplosion tendency of the MA and Mag particles in the propellants was reduced at higher pressures due to reduced vapor bubble growth. Out of all the materials investigated, MA particles provide the best combination of burning rate and product sizes. (C) 2018 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:金属化推进剂通常会产生大团聚物,从而导致两相流损失。定制复合金属燃料颗粒可以改善点火和燃烧特性,同时减小产品滴尺寸。在这项工作中,合成,表征了机械活化的(MA)铝(Al)和镁(Mg)粉末,并与镁(Mag)合金,纯Al,纯Mg及其物理混合物(PM)以相同的1:1进行了比较。质量比为MA和Mag粉末。 CO2激光点火测试表明,MA粉末比Mag粉末具有更高的反应活性,并且在点火时会出现颗粒破碎。磁粉仅在高加热速率下显示碎裂和微爆炸。与Mag,纯Al,PM和纯Mg的降序相比,含MA粉的高氯酸二羟基铵基端基聚丁二烯复合推进剂的燃烧速率最高。推进剂和产物收集的高速成像表明,由于碎裂和Mg汽化,MA,Mg和Mag粉末在较低压力下比纯Al或PM产生的团块小得多。然而,由于蒸汽气泡的减少,在较高的压力下,推进剂中的MA和Mag颗粒的微爆炸趋势降低了。在所有研究的材料中,MA颗粒提供了燃烧速度和产品尺寸的最佳组合。 (C)2018年燃烧研究所。由Elsevier Inc.出版。保留所有权利。

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