CHINESE JOURNAL OF ENERGETIC MATERIALS
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Effect of Active-additive upon the Combustion Catalysis of Double-based Propellant
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    Abstract:

    Active additives for changing combustion properties are added into double-based propellants so as to meet multi-purpose demands. Potassium nitrate is an useful component for some special propellants and fire-extinguishers in Russia. But the study of combustion of double-based propellants containing KNO3 shows that combustion catalysis is decreased, and the higher the KNO3 content , the weaker the catalysis. Nitramines (RDX,HMX) show active function upon the energy properties and the combustion catalysis of propellants. The experimental results demonstrate that combustion rate of propellants with or without RDX is almost same. It means that Z for propellants with RDX is increased .For propellants containing HMX the catalysis show the same picture compared with that of containing RDX. Special study of catalysis of propellants upon nitramines shows that catalysts do not act upon nitramines. It means that only for double-based propellants nitramines demonstrate active role on combustion catalysis.The various function of active additives upon the combustion catalysis of propellants may be explained by the various mechanisms of combustion catalysis of propellants with KNO3 and nitramines. Theoretically, in the space zone near the surface of condensed phase of double-based propellants there exists carbon frog-carbon aerosol zone, which can retain the catalysts particles and promote the catalysis reaction. KNO3 as a positive oxygen balance compound can destroy the carbon aerosol zone, decrease the catalysis, nitramines as negative oxygen balance compounds can increase carbon aerosol zone inversely. Therefore basing on the various value of oxygen balance of additives the role of additives changes from promoting combustion catalysis to preventing them.

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Get Citation

金韶华,王申,松全才.活性添加剂对双基推进剂燃烧催化作用的影响[J].含能材料,2002,10(2):91-94.
JIN Shao-hua, WANG Shen, SONG Quan-cai. Effect of Active-additive upon the Combustion Catalysis of Double-based Propellant[J]. Chinese Journal of Energetic Materials,2002,10(2):91-94.

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History
  • Received:January 07,2002
  • Revised:
  • Adopted:
  • Online: November 02,2011
  • Published: