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Safety and Detonation Performance of HMX-based Condensed Phase Explosives Containing α-AlH3
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Xi′an Modern Chemistry Research Institute, Xi′an 710065, China

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    Abstract:

    In order to explore the detonation law of α-AlH3 in condensed phase explosive, the safety features of α-AlH3 were characterized. The results indicated that α-AlH3 had poor thermal stability due to its sensitivity to temperature and humidity. The operational condition for α-AlH3 samples should not exceed 30 ℃ RT and 60% RH. HMX was selected as the main high explosive to develop a formulation containing α-AlH3 with a self-designed technology namely direct method of step temperature control and cooling. The safety, detonation performance, work capacity and explosion reaction process of the explosive were studied. The molding powder had low mechanical sensitivity and good moldability. When the α-AlH3 content exceeded 10%, the relative density of the grain decreased with increasing content of α-AlH3. The characteristic detonation velocity of α-AlH3 was 6078 m·s-1. Compared with an HMX based explosive formulation containing aluminum, the counterpart with α-AlH3 had an equivalent work capacity. But its work capacity was poor at the high and medium pressure stage of the detonation products. The hydrogen element in α-AlH3 mainly existed in the form of hydrogen in the detonation products.

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牛磊,曹少庭,金大勇,等.含α-AlH3的HMX基凝聚相炸药的安全性和爆轰性能[J].含能材料,2021,29(10):957-963.
NIU Lei, CAO Shao-ting, JIN Da-yong, et al. Safety and Detonation Performance of HMX-based Condensed Phase Explosives Containing α-AlH3[J]. Chinese Journal of Energetic Materials,2021,29(10):957-963.

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History
  • Received:April 10,2021
  • Revised:July 25,2021
  • Adopted:July 12,2021
  • Online: July 15,2021
  • Published: October 25,2021