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Regression Rates of Solid Fuels Containing High Nitrogen (HiN) Materials

机译:含高氮(HiN)材料的固体燃料的回归率

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The combustion behavior of novel energetic formulations in solid fuels to replace conventional, low-energy, binders such as hydroxyl-terminated polybutadiene (HTPB) were examined. The proposed solid fuels will provide higher enthalpy, higher density, and improved rocket engine performance. The regression rates of these High Nitrogen (HiN) ingredients indicate significant improvement compared to the classical HTPB solid fuels. Upon decomposition, the formation of N_2 yields a high heat of formation, which in turn suggests higher combustion enthalpies and improved specific impulse. Friction sensitivity, and opposed-flow burning rate experiments of candidate materials were performed. TAGzT formulations show great promise with a 25% increase in regression rate for a 25 wt% addition of Triaminoguanidium azotetrazolate (TAGzT). At the same time, although TAGzT is classified as a 1.1 high explosive, formulations containing 50% TAGzT by mass passed classical DoD / DoE safety tests including friction, impact, and static discharge test.
机译:研究了新型固体燃料中高能配方的燃烧行为,以取代常规的低能粘合剂,例如羟基封端的聚丁二烯(HTPB)。拟议的固体燃料将提供更高的焓,更高的密度并改善火箭发动机的性能。与传统的HTPB固体燃料相比,这些高氮(HiN)成分的回归速率表明有显着改善。分解后,N_2的生成会产生很高的生成热,这反过来又暗示了更高的燃烧焓和改善了的比冲。进行了摩擦敏感性和候选材料的逆流燃烧速率实验。 TAGzT配方显示出巨大的希望,添加25 wt%的三氨基胍偶氮四唑酸盐(TAGzT)可使回归率提高25%。同时,尽管TAGzT被列为1.1高炸药,但质量分数为50%的TAGzT制剂通过了经典的DoD / DoE安全测试,包括摩擦,冲击和静电放电测试。

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