CHINESE JOURNAL OF ENERGETIC MATERIALS
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Microscale Continuous Flow Preparation and Characterization of Ultrafine Zr@NC
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1.School of Chemistry andChemical Engineering, Nanjing University of ScienceandTechnology,Nanjing 210094, China;2.Micro-Nano Energetic Devices Key Laboratory, Ministry of Industry and Information Technology, Nanjing 210094, China;3.Shaanxi Applied Physics and Chemistry Research Institute,Xi′an 710061,China

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    Abstract:

    In order to achieve the safety of the preparation process of ultrafine zirconium (Zr) powder, a method for preparing core-shell Zr powder by continuous flow at microscale was studied. A continuous microfluidic system consisting of microfluidic unit and spray-drying unit was established to verify the feasibility. The system can realize the microscale mixing of components, the formation of core-shell structure and the post-processing of samples continuously. Using Zr powder and nitrocellulose (NC) as composite components, the structure regulation of Zr@NC was studied by controlling content of NC and adjusting dry gas pressure at the microscale. In addition, the activity and safety of Zr@NC were analyzed by thermal analysis and electrostatic spark sensitivity test. The results show that the Zr powder with uniform morphology and core-shell structure can be prepared by the continuous microfluidic system. Thermal analysis results show that the oxidation weight gain of Zr@NC is only 1.04% lower than that of the raw Zr, and the energy release is faster. According to the electrostatic spark sensitivity test, it was found that the 50% ignition energy of Zr@NC is increased from 1.42 mJ to 197.82 mJ compared with the raw Zr, which means the electrostatic spark sensitivity is greatly reduced.

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费翼鹏,石锦宇,朱朋,等.超细Zr@NC的微尺度连续流动制备与性能表征[J].含能材料,2022,30(5):417-423.
FEI Yi-peng, SHI Jin-yu, ZHU Peng, et al. Microscale Continuous Flow Preparation and Characterization of Ultrafine Zr@NC[J]. Chinese Journal of Energetic Materials,2022,30(5):417-423.

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History
  • Received:January 24,2022
  • Revised:April 20,2022
  • Adopted:April 11,2022
  • Online: April 12,2022
  • Published: May 25,2022