Effect of Particle Morphology and Added Gallium on Reactivity of Aluminum Powders

IF 3.4 3区 材料科学 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Advanced Engineering Materials Pub Date : 2024-11-18 DOI:10.1002/adem.202401757
Purvam Mehulkumar Gandhi, Mirko Schoenitz, Edward L. Dreizin
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Abstract

Micron-sized powders of neat aluminum and aluminum combined with 5 wt% gallium are prepared as flakes and spherical composites by emulsion-assisted milling. Such powders are of interest as high-energy-density fuel additives to solid propellants, explosives, and pyrotechnics. Added gallium does not affect the size or shape of the prepared composites; it also does not change appreciably the oxidation kinetics of the prepared powders. All milled powders ignite readily when coated on an electrically heated filament, unlike the starting aluminum powder. Powders with added gallium ignite at slightly lower temperatures when heated rapidly. The liquid metal embrittlement effect due to added gallium might have caused a smaller microstrain in the refined, milled powders. However, it does not affect the oxidation. Instead, it is proposed that added gallium alters the natural amorphous alumina film, affecting its transition to a crystalline γ-phase during rapid heating, and thus affecting the powder ignition.

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颗粒形态及添加镓对铝粉反应性的影响
采用乳剂辅助铣削法制备了微米级纯铝粉和掺5%镓的铝粉片状和球形复合材料。这种粉末可作为固体推进剂、炸药和烟火的高能量密度燃料添加剂。所添加的镓不影响所制备的复合材料的尺寸或形状;它也不会明显改变所制备粉末的氧化动力学。所有研磨过的粉末在涂上电加热的灯丝时都很容易点燃,这与开始使用的铝粉不同。添加了镓的粉末在快速加热时温度稍低。由于添加镓而产生的液态金属脆化效应可能使精炼后的磨粉产生较小的微应变。但不影响氧化。相反,有人提出,添加镓改变了天然非晶氧化铝膜,影响其在快速加热过程中向结晶γ相转变,从而影响粉末的点火。
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来源期刊
Advanced Engineering Materials
Advanced Engineering Materials 工程技术-材料科学:综合
CiteScore
5.70
自引率
5.60%
发文量
544
审稿时长
1.7 months
期刊介绍: Advanced Engineering Materials is the membership journal of three leading European Materials Societies - German Materials Society/DGM, - French Materials Society/SF2M, - Swiss Materials Federation/SVMT.
期刊最新文献
Issue Information Principles and Mechanisms of Cryomilling of Metallic Materials: Insights from Recent Studies Celebrating Excellence in Materials Science: Prof. Suryanarayana Challapalli Mechanical Alloying: An Advanced Processing Route for Development of Iron-Based Oxide-Dispersion-Strengthened Alloys Issue Information
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