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Synthesis and Characterization of Aluminum-Rich Nanocomposite Powders at Cryogenic Temperatures

机译:低温温度下富含铝纳米复合粉末的合成与表征

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Nanocomposite materials with reactive components are of interest for many applications in pyrotechnics, explosives, and propellants. Several such materials have been recently prepared by Arrested Reactive Milling (ARM), a method based on mechanical milling of μm-sized component powders to form μm-sized composite particles in which the components are mixed on a scale of 100 nm or finer. The temperature at which the milling is performed affects significantly both the rate at which the material is refined and the final properties of the product. In the present paper we report on an effort prepare Al-CuO and Al-MoO3 reactive nanocomposites at cryogenic temperatures. A SPEX Certiprep 6815 Freezer/Mill was used to prepare the nanocomposites with aluminum-rich compositions from μm-sized component powders. The material was processed in steel vials using steel balls of different sizes as milling medium. The number and dimensions of the milling balls as well as the milling time were systematically varied. The prepared powders were characterized by X-ray diffraction, particle size analysis, and scanning electron microscopy. Thermal characteristics were studied using a custom wire-ignition setup and differential scanning calorimetry. Preliminary results show that the uniformity of mixing and reactivity of the nanocomposite powders can be substantially improved using milling at cryogenic temperatures.^
机译:具有反应性组分的纳米复合材料对于烟火,炸药和推进剂的许多应用感兴趣。最近通过被捕的反应性铣削(臂)制备了几种这些材料,该方法是基于机械研磨的μm大小的组分粉末的方法,以形成μm尺寸的复合颗粒,其中组分在100nm或更细的等级中混合。进行研磨的温度显着影响材料的精制材料的速率和产品的最终性质。在本文中,我们报告了在低温温度下制备Al-CuO和Al-Moo3反应性纳米复合材料的努力。 SPEX CERTIPREP 6815冷冻机/磨机用于制备纳米复合材料,其中富含μm尺寸的组分粉末的富含铝的组合物。将材料用不同尺寸的钢瓶用作铣削介质处理。铣削球的数量和尺寸以及铣削时间得到系统地改变。通过X射线衍射,粒度分析和扫描电子显微镜表征制备的粉末。使用定制线火设置和差示扫描量热法研究了热特性。初步结果表明,在低温温度下铣削,可以基本上改善纳米复合粉末的混合和反应性的均匀性。^

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