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首页> 外文期刊>Journal of Applied Physics >Energy release characteristics of the nanoscale aluminum-tungsten oxide hydrate metastable intermolecular composite
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Energy release characteristics of the nanoscale aluminum-tungsten oxide hydrate metastable intermolecular composite

机译:纳米氧化铝水合钨亚稳分子间复合材料的能量释放特性

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Tungsten oxides are of interest as an oxidant for metals in metastable intermolecular composites (MICs), a reactive nanoscale powder useful for such applications as electric matches and gun primers. Smaller particles typically lead to fast reaction rates in this class of energetic material, and we have synthesized nanoscale WO_3 · H_2O using wet chemistry. Analysis by electron microscopy and small angle x-ray scattering revealed an approximately 100-nm-wide by 7-nm-thick platelet morphology. X-ray diffraction verified the orthorhombic structure and composition of the hydrate. A MIC material was formulated using 44 nm Al as the fuel. Performance was measured using a pressure cell where total enthalpy change and energy release rate was measured. This report includes the thermodynamic analysis of the pressure cell (calorimetry) that allows the determination of these metrics. Accuracy of the technique is discussed. Performance of the hydrate was found to significantly exceed that of MIC formulated with dehydrated tungsten oxide for one formulation, having an energy release of approximately 1.8 MJ/kg at a rate of approximately 215 GW/m~2, compared to around 1.1 MJ/kg at a rate of around 130 GW/m~2 for the dehydrated formulation. The data show that the enhanced behavior of the hydrated MIC formulation resulted from the reaction of aluminum with the interstitially bound water, which had additional energy release and generated hydrogen gas.
机译:钨氧化物作为亚稳分子间复合材料(MIC)中金属的氧化剂是令人感兴趣的,后者是一种可用于电火柴和枪底漆等应用的活性纳米级粉末。在这类高能材料中,较小的颗粒通常会导致快速的反应速率,并且我们已经使用湿化学方法合成了纳米级WO_3·H_2O。通过电子显微镜和小角度X射线散射进行的分析表明,血小板的形态大约为100 nm宽乘7 nm厚。 X射线衍射证实了水合物的正交晶结构和组成。使用44 nm Al作为燃料配制MIC材料。使用压力传感器测量性能,其中测量总焓变化和能量释放速率。该报告包括压力电池的热力学分析(量热法),可以确定这些量度。讨论了该技术的准确性。发现该水合物的性能显着超过用脱水氧化钨配制的一种配方的MIC的性能,以约215 GW / m〜2的速率释放能量约1.8 MJ / kg,而约1.1 MJ / kg对于脱水制剂,其速率约为130 GW / m〜2。数据表明,水合MIC配方的增强性能归因于铝与间隙键合的水的反应,水具有额外的能量释放并产生氢气。

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