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Aluminum Burn Rate Modifiers Based on Reactive Nanocomposite Powders

机译:基于反应性纳米复合材料粉末的铝烧伤率改性剂

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Aluminum powders have long been used in reactive materials for such applications as propellants, pyrotechnics and explosives. Aluminum has a high enthalpy of combustion but relatively low combustion rate. Addition of reactive nanocomposites can increase the burn rate of aluminum and thus the overall reaction rate. Replacing a small fraction of the fuel by a nanocomposite material can enhance the reaction rate with little change to the thermodynamic performance of the energetic formulation. This research showed the feasibility of the above concept using nanocomposite powders prepared by Arrested Reactive Milling (ARM), a scalable "top-down" technique for manufacturing reactive nanocomposite materials. The nanocomposite materials used in this study were 2B+Ti, and Al-rich 8Al+3CuO, and 8Al+MoO3. The reactive nanocomposites were added to micron sized aluminum powder and the mixture was burned in a constant volume chamber. The combustion atmosphere was varied using oxygen, nitrogen, and methane. The resulting pressure traces were recorded and processed to compare different types and amounts of modifiers.
机译:铝粉末长期以来用于可反应材料,用于这种应用作为推进剂,烟火和炸药。铝具有高燃烧焓,但燃烧速率相对较低。反应性纳米复合材料的添加可以增加铝的燃烧速率,从而增加整体反应速率。通过纳米复合材料更换小部分燃料可以提高反应速率,随着能量配方的热力学性能几乎没有变化。该研究表明,上述概念使用通过阻止反应铣削(臂)制备的纳米复合粉末,一种用于制造反应性纳米复合材料的可扩展的“自上而下”技术。本研究中使用的纳米复合材料是2b + Ti,富含al的8Al + 3Cuo和8Al + Moo3。将反应性纳米复合材料加入微米尺寸铝粉中,并将混合物在恒定体积室中燃烧。使用氧气,氮气和甲烷变化燃烧气氛。记录并加工所得到的压力迹线以比较不同类型和量的改性剂。

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