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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Taguchi Optimization of Solvent-Antisolvent Crystallization to Prepare Ammonium Perchlorate Particles
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Taguchi Optimization of Solvent-Antisolvent Crystallization to Prepare Ammonium Perchlorate Particles

机译:Taguchi优化溶剂 - 抗溶剂结晶,制备高氯酸铵颗粒

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The sphericity and size of ammonium perchlorate (AP) particles significantly influence the properties of composite propellants. As the AP particles become more spherical, the accumulation coefficient increases, the viscosity during casting decreases, and the particle loading and burning rate increase. Hence, the production of micronized AP particles with an average size between 1 and 20 mu m is important to increase the loading percentage of AP in the composite propellant. Here, the Taguchi experimental design was used to optimize the solvent-antisolvent crystallization (SAC) process for the preparation of micronized AP particles with higher sphericity. SAC parameters such as the type of antisolvent, the solvent-to-antisolvent ratio, the antisolvent temperature, the stirring speed, and the retention time were investigated at four levels. The type of antisolvent and the solvent-to-antisolvent ratio were found to mainly contribute to improving the sphericity and size of the AP particles, respectively.
机译:高氯酸铵(AP)颗粒的球形和尺寸显着影响复合推进剂的性质。随着AP颗粒变得更加球形的,累积系数增加,铸造过程中的粘度降低,颗粒载荷和燃烧速率增加。因此,在1至20μm之间的平均尺寸的微粉化AP颗粒的产生对于增加复合推进剂中的AP的加载百分比是重要的。这里,TAGUCHI实验设计用于优化溶剂 - 抗溶剂结晶(SAC)方法,用于制备具有较高球体的微粉化AP颗粒。在四个水平下研究了诸如防溶剂类型,溶剂 - 抗溶剂比,抗溶剂温度,搅拌速度和保留时间的囊参数。发现抗溶剂的类型和溶剂 - 抗溶血比分别有助于改善AP颗粒的球形度和大小。

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