Impact of lattice inclusion of Cu and Fe ions on thermal decomposition characteristics of ammonium perchlorate

Savitha Nair, S. Mathew, Reghunadhan C.P. Nair
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Abstract

Ammonium perchlorate (AP) is the universal oxidiser in use for all the solid rocket propellant motors used for space exploration due to its high available oxygen content and thermal decomposition without any solid residue. The inclusion of reactive species in AP directly affect the viscoelastic and ballistic properties of the propellant. Variations in lattice configuration of AP change its physical and thermal characteristics dramatically. In the present work AP was doped with Copper perchlorate and Iron perchlorate through co crystallisation. The impact of inclusion of these ionic species in the lattice on the thermal decomposition characteristics of AP was examined. The incorporation affected the physical as well as the ballistic characteristics of the resultant AP. The incorporation of foreign ions into AP crystals significantly changed the crystal morphology. The decomposition temperature decreased vis-a-vis with normal AP. The activation energy remarkably decreased for the doped AP crystals.
Cu和Fe离子晶格包合对高氯酸铵热分解特性的影响
高氯酸铵(AP)具有有效氧含量高、热分解无固体残留物的特点,是所有用于空间探索的固体火箭推进剂发动机的通用氧化剂。活性物质的掺入直接影响推进剂的粘弹性和弹道性能。AP晶格结构的变化极大地改变了其物理和热特性。本研究通过共结晶的方法,在AP中掺杂高氯酸铜和高氯酸铁。考察了晶格中这些离子种类的加入对AP热分解特性的影响。掺入影响了合成AP的物理特性和弹道特性。外来离子掺入AP晶体显著改变了晶体形态。与正常AP相比,分解温度降低,掺杂AP晶体的活化能显著降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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