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Coupling Properties of Crack Penetration Driven by Explosive Burning Products
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Laboratory for Shock Wave and Detonation Physics, Institute of Fluid Physics, CAEP, Mianyang 621999, Sichuan, China

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    Abstract:

    In order to investigate the characteristics of crack penetration in explosive bulk driven by burning products, and deepen the mechanism understanding on the process of high intensity reaction induced by burning products entering into cracks and forming convective burning under accidental ignition. The penetration of cracks in a HMX-based PBX (with a content of 95% for HMX) under thermal initiation at the preformed gap was photographed by the high-speed camera. Experimental results reveal that, due to the strong meso-heterogeneity of polymer bonded explosive (PBX), different samples of the same kind of explosive have different meso-structures, which results in the difference of crack propagation paths (which may propagate in a straight line or deflect)., Velocities of the crack penetration are nearly the same under same confinement and same pre-load stress. The average crack penetration velocity is about 146.7 m·s-1 in the experimental condition of this research.

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尚海林,马骁,程赋,等.炸药燃烧产物驱动裂纹动态扩展耦合特性[J].含能材料,2019,27(10):819-823.
SHANG Hai-lin, MA Xiao, CHENG Fu, et al. Coupling Properties of Crack Penetration Driven by Explosive Burning Products[J]. Chinese Journal of Energetic Materials,2019,27(10):819-823.

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History
  • Received:May 15,2019
  • Revised:September 14,2019
  • Adopted:July 24,2019
  • Online: September 05,2019
  • Published: October 25,2019