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Thermal initiation of consolidated nanocomposite thermites

机译:固结纳米复合铝热剂的热引发

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Reactive nanocomposite powder with bulk composition of 8AlMoO_3 was prepared by arrested reactive milling and cold-pressed into 0.635 cm diameter cylindrical pellets. The material was consolidated to densities up to 99% of theoretical maximum density, or 3.217 g/cm3, while maintaining high reactivity. Pellets were ignited by a CO_2 laser beam and the ignition delays increased at lower laser powers and greater pellet densities. A simple numerical model was developed to describe the heating and thermal initiation of the reactive pellets. The model described adequately the observed effects of both laser power and pellet density on the measured ignition delays. The exothermic reaction governing thermal initiation of the prepared consolidated samples is described by the same Arrhenius term as that used to describe ignition of thin layers of respective unconsolidated nanocomposite powders coated on an electrically heated filament. An exothermic reaction with the same activation energy is also detected by earlier thermo-analytical studies with Al-MoO_3 nanocomposite thermites and is suggested to be rate-limited by the reduction of MoO_3.
机译:通过停止反应性研磨并将其冷压成直径为0.635cm的圆柱形粒料来制备具有8AlMoO_3的本体组成的反应性纳米复合粉末。将材料固结至最高理论最大密度的99%或3.217 g / cm3,同时保持高反应活性。用CO_2激光束点燃药丸,并且在较低的激光功率和较高的药丸密度下点火延迟增加。建立了一个简单的数值模型来描述反应性小球的加热和热引发。该模型充分描述了观察到的激光功率和颗粒密度对测得的点火延迟的影响。用来控制制备的固结样品热引发的放热反应用与描述覆盖在电加热丝上的各个未固结纳米复合粉末薄层着火的Arrhenius术语相同的描述。早期的Al-MoO_3纳米复合铝热剂的热分析研究也检测到了具有相同活化能的放热反应,并提示该反应受MoO_3还原速率的限制。

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