CHINESE JOURNAL OF ENERGETIC MATERIALS
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Application of Aluminum-based Composite Fuel in NEPE Solid Propellant
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1.Science and Technology on Aerospace Chemical Power Laboratory, Xiangyang 441003, China;2.Hubei Institute of Aerospace Chemical technology, Xiangyang 441003, China

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    Abstract:

    In order to study the performance of aluminum-based composite fuel in NEPE solid propellant, the aluminum-base composite fuel(Al@AP) was used in the NEPE solid propellant instead of aluminum powder, and the effects of Al@AP on the combustion, mechanics, and process performance of NEPE propellant were studied by explosion heat test, engine test, residual active aluminum test, high-speed photography, unidirectional tensile test and process properties test. And the combustion mechanism of Al@AP in NEPE propellant was derived. Results shows that by replacing FLQT-3 Al powder with 19.5% Al@AP, the explosion heat of NEPE propellant increased from 6029.4 J·g-1 to 6924.8 J·g-1, and the mass of residue decreased from 28.91 g to 7.64 g, and the active aluminum content of residue decreased from 14.64% to 0.37%, and the particle size of residue decreased from 94.12 μm to 24.21 μm. The injection efficiency of NEPE propellant with Al@AP is improved. The residence time of aluminum powder at the burning surface decreased from 55 ms to 40 ms, and there was no obvious agglomeration phenomenon. Al@AP powder has little effect on the dynamic burning rate, mechanics and process properties of NEPE propellant.

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汪慧思,张鑫,王艳薇,等.铝基微单元复合燃料在NEPE固体推进剂中的应用[J].含能材料,2022,30(8):819-825.
WANG Hui-si, ZHANG Xing, WANG Yan-wei, et al. Application of Aluminum-based Composite Fuel in NEPE Solid Propellant[J]. Chinese Journal of Energetic Materials,2022,30(8):819-825.

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History
  • Received:May 31,2022
  • Revised:July 14,2022
  • Adopted:July 13,2022
  • Online: July 13,2022
  • Published: August 25,2022