CHINESE JOURNAL OF ENERGETIC MATERIALS
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Estimation of the Application Efficiency of TKX-50 and CL-20 Mixture in Solid Propellant
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1.Science and Technology on Aerospace Chemical Powder Laboratory, Hubei Institute of Aerospace Chemical Technology, Xiang yang 441003, China;2.Beijing Institute of System engineering, Bingjing 100101, China

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    Abstract:

    In order to realize the efficient application of TKX-50 in field of solid propellants, the energy performance of poly(glycidylaminopropyl ether) (GAP)-based solid propellants containing TKX-50, CL-20, and TKX-50/CL-20 was calculated using the minimum free energy method, and the feasibility of TKX-50 and CL-20 combination application was analyzed. The application efficiency of TKX-50/CL-20/GAP-based solid propellant was also estimated. The results show that when TKX-50 content increases, balance combustion temperature of propellant in combustion chamber(Tc) and combustion gas average relative molecular mass() of propellant decrease at the same time, and the theoretical ratio of impulse was first increased and then decreased. The compatibility of TKX-50 and CL-20 was moderate compatibility. It has good thermal stability and safety performance of the TKX-50/CL-20 mixture propellant. It can significantly broaden the choice of the content of each component of the formulation with TKX-50/CL-20 mixture propellant. The lower limit of CL-20 content in the compound propellant with theoretical specific impulse greater than 272 s was only 40% of pure CL-20 propellant. At the same energy level, TKX-50/CL-20 mixture has the characteristics of low cost and low characteristic signal, and has the potential of engineering application.

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王伟,王健,付晓梦,等. TKX-50/CL-20复配在固体推进剂中应用效能的预估[J].含能材料,2021,29(9):827-832.
WANG Wei, WANG Jian, FU Xiao-meng, et al. Estimation of the Application Efficiency of TKX-50 and CL-20 Mixture in Solid Propellant[J]. Chinese Journal of Energetic Materials,2021,29(9):827-832.

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History
  • Received:April 10,2020
  • Revised:June 20,2021
  • Adopted:May 17,2021
  • Online: June 11,2021
  • Published: September 25,2021