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- W1985355863 abstract "This paper presents a study of the effect of microscale capillary diameter on the combustion of a nanoscale Al/MoO3 thermite. The techniques used to load materials were modified from those of high pressure liquid chromatography (HPLC) capillary column experiments. This process involves packing wet materials at high pressures in an attempt to achieve higher density beds and avoid gapping and cracking upon drying. The feasibility of using this packing technique is explored including thermochemical and experimental analysis of different material, solvent, and dispersant combinations. Experimental packing studies include nanoscale aluminum, Fe3O4, Al/Fe3O4, and Al/MoO3. Solvents explored include octane and dimethyl formamide (DMF). Successful loading was obtained in capillaries ranging from inner diameters of 25 µm to 250 µm. Successful combustion propagation of Al/MoO3 was achieved in 150 µm and 250 µm inner diameter capillaries. A transition from a slow speed deflagration (~0.18 m/s) to a higher speed (~390 m/s) convective propagation was observed in 250 µm diameter samples. The interplay between energy release and loss is discussed." @default.
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- W1985355863 date "2008-07-21" @default.
- W1985355863 modified "2023-09-24" @default.
- W1985355863 title "The Effect of Microscale Confinement Diameter on the Combustion of an Al/MoO3 Thermite" @default.
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- W1985355863 doi "https://doi.org/10.2514/6.2008-4717" @default.
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