CHINESE JOURNAL OF ENERGETIC MATERIALS
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Preparation and Modification Technology of Lead Azide Primary Explosive Based on Microfluidics
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1.School of Mechatronical Engineering, Beijing Institute of Technology, Beijing 100081, China;2.Science and Technology on Applied Physical Chemistry Laboratory, Shaanxi Applied Physics-Chemistry Research Institute, Xi′an 710061, China

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    Abstract:

    The conventional lead azide (Pb(N32, LA) preparation process has problems such as the risk of self-explosion. Aiming at the above problems, the spin-T microfluidic chip with the characteristics of short diffusion distance, large specific surface area, and continuous reaction was used as a microreactor. And then, the LA primary explosive synthesized by microfluidics was spherically modified by using the flow-focusing droplet chip. The effects of the flow rate, crystal form control agent, and other factors on the product were investigated by SEM, XRD, and DSC. The sensitivity and explosion performance of microfluidic LA, microsphere LA, and powder LA were compared. The results show that by controlling the microfluidic reaction parameters, the particle size of the LA can be effectively controlled, and they were all α-type. After the spheroidization, the impact sensitivity H50 (25.5 cm to 12.1 cm) was significantly improved, but the electrostatic spark E50 (1.98 kV to 2.97 kV) and flame sensitivity L50 (26.3 cm to 16.1 cm) were reduced. At the same time, the detonation pressure was increased (by 63.6%). It shows that the microfluidic technology was an effective method that can safely prepare and modify the LA primary explosive, which provided an idea for the controllable preparation and regulation of sensitive primers.

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韩瑞山,张方,卢飞朋,等.微流控技术制备叠氮化铅起爆药及其改性[J].含能材料,2022,30(5):451-458.
HAN Rui-shan, ZHANG Fang, LU Fei-peng, et al. Preparation and Modification Technology of Lead Azide Primary Explosive Based on Microfluidics[J]. Chinese Journal of Energetic Materials,2022,30(5):451-458.

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History
  • Received:January 12,2022
  • Revised:April 02,2022
  • Adopted:March 25,2022
  • Online: March 29,2022
  • Published: May 25,2022