首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Composite Al center dot Ti powders prepared by high-energy milling with different process controls agents
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Composite Al center dot Ti powders prepared by high-energy milling with different process controls agents

机译:复合AL中心点TI粉末通过高能铣削制备,具有不同的过程控制器

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摘要

Aluminum-rich Al-Ti composite powders with controllable particle size distributions were prepared by staged mechanical milling using polar and nonpolar organic process control agents. Staged milling allowed the separation of formation of composites in the first stage from control of particle size and ignition behavior in the second stage. Using the polar solvent acetonitrile in the second stage resulted in more finely dispersed particles with lower onset temperatures for intermetallic formation reactions, and lower ignition temperatures, compared with using the non-polar hexane. All composites showed lower ignition temperatures than reference aluminum. Combustion rates for all composites were greater than for reference aluminum, while net energy release remained comparable. The results suggest that staged milling with process control agents of different polarity is a viable method to control particle size distributions and ignition behavior in mechanically milled, metal-based energetic composite powders while maintaining the energy content. Particle size control is critical for adopting such materials in practical systems. (C) 2019 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:采用极性和非极性有机工艺对照剂,通过阶段机械研磨制备具有可控粒度分布的富含铝的Al-Ti复合粉末。分叉铣削允许在第二阶段的粒度和点火行为的控制中分离复合材料中的复合材料。使用非极性己烷相比,在第二阶段中使用第二阶段中的极性溶剂乙腈产生更细的分散的颗粒,以及用于金属间形成反应的较低发病温度,以及较低的点火温度。所有复合材料显示出比参考铝的较低点火温度。所有复合材料的燃烧速率大于参考铝,而净能量释放保持可比。结果表明,具有不同极性的过程控制剂的分阶段研磨是控制机械研磨,金属基能量复合粉末中的粒度分布和点火行为的可行方法,同时保持能量含量。粒度控制对于采用实际系统中采用这种材料至关重要。 (c)2019年日本粉末技术学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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