CHINESE JOURNAL OF ENERGETIC MATERIALS
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Numerical Simulation of Extrusion Process and Die Optimization for 19-Hole Propellant
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(Charging Technology Institute, Nanjing University of Science and Technology, Nanjing 210094, China)

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    Abstract:

    Pin broken appears in process of extrusion of 19-hole propellant and products are hard to be shaped when the viscosity of flow is high. This study simulated the forming process of propellant by the finite element method to solve this problem. On the basis of simulation results, effects of the compression ratio, the length of forming section and structure of pin holder on the distribution of stress and velocity of propellant flow were analyzed. The compression ratio of the optimized die is 4.25, the forming length is 26.0 mm, and the pin holder is optimized to increase the axial flow propellant. The results show that, after optimization, the maximum pressure in the flow channel reduces by 40.45%, the radial force on the outermost die pins reduces by 37.45%, the maximum radial velocity of the fluid in compression section decreases by 66.98%. The components distribute evenly, the propellant surfaces are smooth and the holes are in good distribution in propellants which are extruded by the new die. The constant volume combustion experiment confirms that the 19-hole propellants burn stability and the progressive combustion is excellent.

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季丹丹,刘志涛,廖昕,等.19孔发射药挤出过程的数值模拟与模具优化[J].含能材料,2016,24(11):1114-1120.
JI Dan-dan, LIU Zhi-tao, LIAO Xin, et al. Numerical Simulation of Extrusion Process and Die Optimization for 19-Hole Propellant[J]. Chinese Journal of Energetic Materials,2016,24(11):1114-1120.

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History
  • Received:May 05,2016
  • Revised:July 22,2016
  • Adopted:August 09,2016
  • Online: November 15,2016
  • Published: November 21,2016