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Characterization of ADN and ADN-Based Propellants

机译:ADN和基于ADN的推进剂的表征

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摘要

Ammonium dinitramide (ADN),NH_4N(NO_2)_2 is being considered as one of the potential new energetic oxidizers for composite propellants.In this study,ADN crystals,prills and two ADN-based propellants having different relative amounts of ingredients were characterized.The concentration of the crystals and the prills samples was determined using ion chromatography.The thermal behavior of the crystals,prills and propellants was studied using DSC,simultaneous TG-DTA-FTIR-MS,ARC (accelerating rate calorimeter),HFC (heat flux calorimeter) and INC (isothermal nanocalorimeter).Decomposition of ADN was observed from all of the samples at temperatures above the melting point of ADN (approx92degC).Formation of N_2O,NO_2,H_2O,CO_2,CO,N_2 and NO was detected during the ADN decomposition.The thermal stability of the ADN samples at temperatures below the melting point of ADN was studied.Early solid decomposition of ADN,which generates N_2O and H_2O,was observed at 60degC.Electrostatic discharge (ESD) and impact sensitivity of the ADN samples were determined.The crystals and prills are sensitive to impact,while the two propellants are relatively less ESD and impact sensitive.
机译:二硝酰胺铵(NHN_4N(NO_2)_2)被认为是复合推进剂潜在的新型高能氧化剂之一。在本研究中,对ADN晶体,小球和两种基于ADN的推进剂进行了表征。离子色谱法测定晶体和小球样品的浓度。DSC,同时TG-DTA-FTIR-MS,ARC(加速量热仪),HFC(热通量仪)研究了晶体,小球和推进剂的热行为。 )和INC(等温纳米量热仪)。在高于ADN熔点(约92摄氏度)的温度下观察到所有样品的ADN分解。研究了ADN样品在低于ADN熔点的温度下的热稳定性。在60°C下观察到ADN早期发生固态分解,生成N_2O和H_2O。晶体和小球对冲击敏感,而两种推进剂对ESD的影响较小,对冲击敏感。

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