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Effects of Nano/Micrometer HMX Particle Gradation on PBX Properties
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(1. National Special Superfine Powder Engineering Research Center, Nanjing University of Science and Technology, Nanjing 210094, China; 2. Military Representative Office of the 763 Factory of PLA, Taiyuan 030000, China; 3. Gansu Yinguang Chemical Industry Group Co Ltd, Baiyin 730900, China)

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    Abstract:

    To improve the comprehensive performance of polymer bonded explosives(PBXs), low sensitivity nano-HMX and micrometer HMX were applied to PBX by particle gradation. Four molding powders were prepared by solution-water slurry method and pressed into explosive cylinders. The surface microstructures of JO-1, JO-2, JO-3 and JO-4 sampls (coarse/micrometer/nano-HMX mass ratios with 100/0/0, 60/35/5, 60/30/10 and 60/25/15, respectively) were observed and the component contents, impact sensitivities, friction sensitivities, thermal decomposition characteristics, compression properties and detonation velocities were measured. Results show that JO-3 sample has the best properties. Compared to the JO-1 sample with single coarse HMX(d50=100 μm), JO-3 sample has the smoother surface, and the impact sensitivity is reduced by 38.3%, the friction sensitivity is reduced by 22.7%, the self-ignition temperature is increased by 5.17 ℃, the compression strength is enhanced by 46%, and the detonation velocity is increased by 55 m·s-1. The HMX based PBX comprehensive performance is improved significantly.

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靳承苏,肖磊,王庆华,等.微/纳米HMX颗粒级配对PBX性能的影响[J].含能材料,2017,25(11):913-919.
JIN Cheng-su, XIAO Lei, WANG Qing-hua, et al. Effects of Nano/Micrometer HMX Particle Gradation on PBX Properties[J]. Chinese Journal of Energetic Materials,2017,25(11):913-919.

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History
  • Received:June 22,2017
  • Revised:August 23,2017
  • Adopted:
  • Online: November 23,2017
  • Published: November 29,2017