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Combustion of metal powder with dinitrogen tetroxide

机译:金属粉与二氮氧化二氮的燃烧

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Here we present analysis of a novel reactive material system that employs dinitrogen tetroxide (N2O4) as a liquid oxidizer with metal powder fuels. The oxidizer was added to micron scale aluminum and zirconium powders by a remote injection system. When ignited with a high voltage spark, the mixtures were observed to possess reactivity comparable to nanocomposite reactive materials, with open-tube flame expansion velocities from 500 to 1400 m/s depending on fuel/oxidizer ratio and tube diameter. Temperatures were observed to range from 300 0 to 3500 K as measured with gray body fits to 16-channel time-resolved pyrometer and time-integrated spectrometer data. These values were significantly below calculated adiabatic flame temperatures, which we attribute to local deviations from stoichiometry and kinetic/energetic limitations similar to those observed in studies of particles burning in high pressures gaseous oxidizers. Al/N2O4 reactivity was found to be most likely limited by the vaporization of the metal from the particle surface and Zr/N2O4 was limited by slower burning and complex interactions involving the solubility of nitrogen and oxygen in the molten Zr. We also discuss the potential for these materials to be used to create an "on/off" reactive material, since N2O4 can be added remotely and driven to evaporate via vacuum or purge of inert gases to return it to a safe condition. (C) 2020 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
机译:在这里,我们对具有金属粉末燃料的液体氧化剂采用二氮氧化物(N2O4)的新型反应材料系统的分析。通过远程喷射系统将氧化剂加入微米级铝和锆粉末中。当用高电压火花点燃时,观察到混合物以具有与纳米复合反应材料相当的反应性,其根据燃料/氧化剂比和管直径,开口管火焰膨胀速度为500至1400 m / s。用灰色体拟合到16沟道时间分辨高温计和时间集成光谱仪数据测量的温度范围为300 0至3500 k的范围。这些值大大低于计算的绝热火焰温度,我们归因于与在高压气态氧化剂中燃烧的颗粒的研究中观察到的化学计量和动力学/能量限制的局部偏差。发现Al / N 2 O 4反应性最可能受到来自颗粒表面的金属的蒸发限制,并且Zr / N 2 O 4受到较慢的燃烧和复杂的相互作用,涉及氮气和氧气在熔融Zr中的溶解度。我们还讨论了这些材料的潜力,用于制造“ON / OFF”反应材料,因为N2O4可以远程加入并通过真空或吹扫惰性气体来蒸发,以将其返回到安全状态。 (c)2020燃烧研究所。由elsevier Inc.保留所有权利发布。

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