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Improvement of silver azide crystal morphology and detonation behavior by fast mixing using a microreaction system with an integrated static micromixer?

机译:通过使用综合静态微混合器快速混合通过快速混合改善叠氮化物晶体形态和爆轰行为的答案?

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摘要

A passive microreaction system with excellent mixing performance was used for the optimization of the size and shape of silver azide (SA) at the microscale. This safe and cost-effective method is characterized by high mixing efficiency, low reagent consumption, and rapid preparation. To exploit the difference, the preparation of SA at the microscale using the passive microreaction system was compared with that at the macroscale in a beaker. The results show that the preparation of SA using the passive microreaction system under microscale conditions has obvious advantages over its preparation in a beaker in terms of crystal morphology, particle size, particle size distribution and thermal stability. The shape of SA prepared in the system is spherical or spherical-like, while the morphology of SA synthesized in a beaker is mostly pyramidal with sharp points. The particle size of SA prepared in the microreaction system ranges from 712.4 nm to 1106.4 nm, while that of SA prepared in a beaker ranges from 255.0 nm to 825.0 nm. In addition, the detonation velocity of submicron-SA is 1850 m s ?1 , which is 150 m s ?1 higher than that of confined SA published in the literature. This study demonstrates the feasibility of a safe and efficient method for fast preparation of SA with improved physical properties.
机译:具有优异的混合性能的无源微孔系统用于在微尺寸下优化叠氮(SA)的尺寸和形状。这种安全且经济高效的方法的特点是效率高,试剂消耗量低,制剂快。为了利用差异,将使用被动微孔系统的微尺度在微尺寸的SA的制备与烧杯中的Macroscale进行比较。结果表明,在微观条件下使用被动微孔系统的SA制备在晶体形态,粒度,粒度分布和热稳定性方面的制备中具有明显的优势。在系统中制备的SA的形状是球形或球形的,而在烧杯中合成的SA的形态主要是具有尖锐的锥体。在微孔系统中制备的SA的粒径范围为712.4nm至1106.4nm,而在烧杯中制备的Sa的粒径为255.0nm至825.0nm。此外,亚微米-SA的爆炸速度为1850 m s?1,比在文献中发表的狭窄SA高出150 m s?1。本研究证明了一种安全有效的方法,用于快速制备SA,具有改善的物理性质。

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