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Nanocomposite thermite powders with improved flowability prepared by mechanical milling

机译:纳米复合材料热轧粉具有通过机械研磨制备的改善的流动性

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Nanocomposite thermite powders are of interest to develop variety of reactive parts and components. Manufacturing these components requires tailoring such properties of the thermite powders as their particle size distributions, particle shapes, and powder flowability. An improved flowability is desired to use such powders as feedstock in additive manufacturing. Arrested reactive milling (ARM) offers a versatile and practical approach for preparing nanocomposite thermites with fully dense particles, which will retain their structures and mixedness between reactive components while being stored, handled, and processed. Here, ARM is modified to include an additional milling stage to tune the shapes and flowability of the prepared powders. Experiments are performed with aluminum-rich Al Fe203 thermites. After the initial nanocomposite thermite is prepared in a planetary mill, it is additionally milled at a reduced rotation rate, replacing milling balls with smaller glass beads, and adding different liquid process control agents. Powders with modified particle shapes and size distributions are obtained, which have substantially improved flowability compared to the initial material. The reactivity of the initial and modified powders is evaluated using different methods. The reactivity of the modified powders is not diminished; instead, an improved reactivity is observed for selected samples.
机译:纳米复合材料热粉对开发各种反应性零部件和组分感兴趣。制造这些部件需要定制热粉末的这种性质作为它们的粒度分布,颗粒形状和粉末流动性。期望改善的流动性可以在添加剂制造中使用这种粉末作为原料。被捕获的反应铣削(ARM)提供了一种多功能和实用的方法,用于制备具有完全致密的颗粒的纳米复合材料热量,这将在存储,处理和加工的同时保持其结构和反应组分之间的混合性。这里,臂被修改为包括额外的铣削阶段以调整制备粉末的形状和流动性。用富含铝的Al Fe203热化进行实验。在行星磨机中制备初始纳米复合材料热量之后,它以降低的旋转速率另外研磨,用较小的玻璃珠替换铣削球,并添加不同的液体过程控制剂。获得具有改进的颗粒形状和尺寸分布的粉末,与初始材料相比具有显着提高的流动性。使用不同的方法评估初始和改性粉末的反应性。改性粉末的反应性不会降低;相反,对于所选样品,观察到改善的反应性。

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