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Feasibility Study and Demonstration of an Aluminum and Ice Solid Propellant

机译:铝和冰固体推进剂的可行性研究和论证

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Aluminum-water reactions have been proposed and studied for several decades for underwater propulsion systems and applications requiring hydrogen generation. Aluminum and water have also been proposed as a frozen propellant, and there have been proposals for other refrigerated propellants that could be mixed, frozen in situ, and used as solid propellants. However, little work has been done to determine the feasibility of these concepts. With the recent availability of nanoscale aluminum, a simple binary formulation with water is now feasible. Nanosized aluminum has a lower ignition temperature than micron-sized aluminum particles, partly due to its high surface area, and burning times are much faster than micron aluminum. Frozen nanoscale aluminum and water mixtures are stable, as well as insensitive to electrostatic discharge, impact, and shock. Here we report a study of the feasibility of an nAl-ice propellant in small-scale rocket experiments. The focus here is not to develop an optimized propellant; however improved formulations are possible. Several static motor experiments have been conducted, including using a flight-weight casing. The flight weight casing was used in the first sounding rocket test of an aluminum-ice propellant, establishing a proof of concept for simple propellant mixtures making use of nanoscale particles.
机译:铝-水反应已被提出并研究了数十年,用于水下推进系统和需要产生氢气的应用。还提出了将铝和水用作冷冻推进剂,并且已经提出了其他冷冻推进剂的建议,这些冷冻推进剂可以混合,就地冷冻并用作固体推进剂。但是,很少有工作来确定这些概念的可行性。随着最近纳米级铝的可用性,用水的简单二元配方现在是可行的。纳米尺寸的铝的点火温度低于微米尺寸的铝颗粒,部分原因是其高表面积,燃烧时间比微米铝快得多。冷冻的纳米级铝和水混合物很稳定,并且对静电放电,冲击和震动不敏感。在这里,我们报告了nAl冰推进剂在小型火箭实验中的可行性研究。这里的重点不是开发优化的推进剂。但是改进的配方是可能的。已经进行了一些静态电机实验,包括使用飞行重量的外壳。飞行配重套管用于铝-冰推进剂的首次探空火箭试验,为利用纳米级颗粒的简单推进剂混合物建立了概念验证。

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