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The role of aluminum particle size in electrostatic ignition sensitivity of composite energetic materials

机译:铝颗粒尺寸对复合含能材料静电点火敏感性的影响

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Very often unintentional ignition of composite energetic materials (CEM) occurs when static electricity is discharged into the CEM. An interesting finding recently reported showed that for micron particle CEM formulations, only aluminum (Al) combined with copper oxide (CuO) was electrostatic discharge (ESD) ignition sensitive, while commonly used Al combined with molybdenum trioxide (MoO3) was deemed not ESD ignition sensitive. In practice however, nano Al-MoO3 results in frequent unintentional ESD ignition events. This study examines the role of Al particle size on ESD ignition sensitivity and measures electrical conductance for each CEM. Results show that as Al particle size is reduced, electrical conductance increases dramatically as does ESD ignition sensitivity. Overall, electrical conductance is shown to increase linearly with increasing Al surface area to volume ratio and the alumina passivation shell surrounding Al core particles plays a significant role in enhancing ignition sensitivity.
机译:当静电释放到CEM中时,复合高能材料(CEM)经常会意外点火。最近报道的有趣发现表明,对于微米级颗粒CEM配方,只有铝(Al)与氧化铜(CuO)结合才对静电放电(ESD)着火敏感,而常用的Al与三氧化钼(MoO3)结合被认为不是ESD着火敏感。但是实际上,纳米Al-MoO3会导致频繁的意外ESD点火事件。这项研究检查了Al粒度对ESD点火灵敏度的作用,并测量了每个CEM的电导率。结果表明,随着Al颗粒尺寸的减小,电导率和ESD点火灵敏度也急剧增加。总的来说,电导率随Al表面积与体积比的增加而线性增加,并且包围Al核颗粒的氧化铝钝化壳在增强点火敏感性方面起着重要作用。

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