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Improving the Explosive Performance of Aluminum Nanoparticles with Aluminum Iodate Hexahydrate (AIH)

机译:六水合碘酸铝提高铝纳米颗粒的爆炸性能

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摘要

A new synthesis approach for aluminum particles enables an aluminum core to be passivated by an oxidizing salt: aluminum iodate hexahydrate (AIH). Transmission electron microscopy (TEM) images show that AIH replaces the Al2O3 passivation layer on Al particles that limits Al oxidation. The new core-shell particle reactivity was characterized using laser-induced air shock from energetic materials (LASEM) and results for two different Al-AIH core-shell samples that vary in the AIH concentration demonstrate their potential use for explosive enhancement on both fast (detonation velocity) and slow (blast effects) timescales. Estimates of the detonation velocity for TNT-AIH composites suggest an enhancement of up to 30% may be achievable over pure TNT detonation velocities. Replacement of Al2O3 with AIH allows Al to react on similar timescales as detonation waves. The AIH mixtures tested here have relatively low concentrations of AIH (15 wt. % and 6 wt. %) compared to previously reported samples (57.8 wt. %) and still increase TNT performance by up to 30%. Further optimization of AIH synthesis could result in additional increases in explosive performance.
机译:一种新的铝颗粒合成方法可以使铝芯被氧化盐钝化:六水合碘酸铝(AIH)。透射电子显微镜(TEM)图像显示AIH替代了限制Al氧化的Al颗粒上的Al2O3钝化层。新的核-壳粒子反应性是利用高能材料(LASEM)产生的激光诱导的空气冲击来表征的,两个不同AIH浓度的Al-AIH核-壳样品的结果证明了它们在快速(爆炸速度)和慢速(爆炸效应)时标。 TNT-AIH复合材料的爆轰速度估计表明,与纯TNT爆轰速度相比,可以提高多达30%的速度。用AIH代替Al2O3可使Al在与爆轰波相似的时间尺度上发生反应。与之前报告的样品(57.8重量%)相比,此处测试的AIH混合物的AIH浓度相对较低(15重量%和6重量%),并且TNT性能仍提高了30%。 AIH合成的进一步优化可能导致炸药性能的进一步提高。

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