High-nitrogen azotetrazole based pyrogen gas generating propellants: Aspects on synthesis, characterization, combustion characteristics and kinetics

IF 3.6 FirePhysChem Pub Date : 2024-12-01 Epub Date: 2024-03-28 DOI:10.1016/j.fpc.2024.03.006
Santhosh G , J. Anju , Supriya N , Sreejith M , Suraj S
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Abstract

Propellant formulations containing a novel high nitrogen azotetrazole salt viz., diammonium 5,5′-azotetrazolate (DAAzT) along with two different binders viz., hydroxyl terminated polybutadiene (HTPB) and glycidyl azide polymer (GAP) were realized as potential pyrogen-based gas generators for use in inflatable structures. The DAAzT-GAP and DAAzT-HTPB propellant systems were investigated for their gas generating capabilities and it was found that the GAP based system offers enhanced gas yield of ∼430 mL/g against ∼320 mL/g for the HTPB based propellant at standard operating pressure of 1 bar and temperature of 298 K. Combustion product analyses of the propellant were undertaken by pyro GC–MS and it was found that the combustion products are benign and constitutes 62% and 53% N2 (mass fraction) as major combustion products from GAP and HTPB propellant respectively. A detailed thermal analysis of DAAzT by isoconversional method of Vzayovkin was undertaken and the dependence of activation energy with conversion was evaluated. The activation energy was also determined using a classical Kissinger method. The impact and friction sensitivity of the promising GAP-DAAzT propellant was found to be 3 Nm and 360 N respectively and the auto ignition temperature is 177.0 °C. Functional evaluation and gas generating capability of DAAzT-GAP propellant were successfully demonstrated in a sub-scale inflation test in a stand-alone configuration.

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基于高氮偶氮四唑的热氮气生成推进剂:合成、表征、燃烧特性和动力学方面的问题
含有新型高氮偶氮四唑盐,即 5,5′-偶氮四唑酸二铵(DAAzT),以及两种不同粘合剂,即羟基端聚丁二烯(HTPB)和缩水甘油酰叠氮聚合物(GAP)的推进剂配方,可作为基于热原的气体发生器用于充气结构中。对 DAAzT-GAP 和 DAAzT-HTPB 推进剂系统的气体生成能力进行了研究,结果发现,在标准工作压力为 1 巴、温度为 298 K 的条件下,基于 GAP 的系统的气体产量为 430 mL/g,而基于 HTPB 的推进剂为 320 mL/g。通过热解气相色谱-质谱仪对推进剂的燃烧产物进行了分析,发现燃烧产物是良性的,GAP 和 HTPB 推进剂的主要燃烧产物分别是 62% 和 53% 的 N2(质量分数)。采用 Vzayovkin 等转化法对 DAAzT 进行了详细的热分析,并评估了活化能与转化率的关系。此外,还采用经典的基辛格方法确定了活化能。结果发现,有前途的 GAP-DAAzT 推进剂的冲击灵敏度和摩擦灵敏度分别为 3 Nm 和 360 N,自燃温度为 177.0 ℃。DAAzT-GAP 推进剂的功能评估和气体生成能力在独立配置的次大规模充气试验中得到了成功展示。
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