Synthesis of the Tetrazolium Derivatives for Ionic Liquid Rocket Fuel and a Study of Their Ignition Delay Time and Viscosity

Hyun-Woong Lee, Seongho Choi
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Abstract

In order to use the liquid rocket fuel, 1,5-diamino-4-methyltetrazolium azide, [DMT]+[N3]- and 1,5-diamino-4-methyltetrazolium cyanide, [DMT]+[CN]- were synthesized and prepared the ionic liquid rocket fuel after dissolving the synthesized solid-type energetic chemicals in hydrazine, respectively. The thermal decomposition temperatures(Td) and densities(d) of the prepared ionic liquid rocket fuels were about 200 ℃ and above 1.0 g/cm3 respectively. The ignition delay times(Idt) of the ionic liqud rock fuels with [DMT]+[N3]- and [DMT]+[CN]- were in a range of 26.6 - 82.5 ms and the 44.0 - 98.5 ms, respectively. These results mean that the synthesized tetrazolium salts could be used as an ionic liquid rocket fuels. The viscosities of the ionic liqud rock fuels with [DMT]+[N3]- and [DMT]+[CN]-, which were dissolved in mixture solution of hydrazine/2-hydroxyethylhydrazine were to be 1.34 - 101 cP, and 1.29 - 80.5 cP, respectively. The synthesized ionic liquid rocket fuels in this study could be used as rocket fuel because the [Idt(100 ms or less), Td(150 ℃ or more), d(1.00 g/cm3 or more), and η (40.0~ 100 cP)] were achieved to satisfy the range of the used liquid rocket fuels.
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离子液体火箭燃料四氮唑衍生物的合成及其滞燃时间和粘度的研究
为了使用液体火箭燃料,合成了叠氮化1,5-二氨基-4-甲基四唑[DMT]+[N3]-和1,5-二氨基-4-甲基四唑氰化1,5-二氨基-4-甲基四唑[DMT]+[CN]-,将合成的固体型能化物溶于联氨后制备离子液体火箭燃料。制备的离子液体火箭燃料的热分解温度(Td)和密度(d)分别在200℃左右和1.0 g/cm3以上。[DMT]+[N3]-和[DMT]+[CN]-离子液态岩石燃料的点火延迟时间(Idt)分别为26.6 ~ 82.5 ms和44.0 ~ 98.5 ms。这意味着合成的四氮唑盐可以用作离子液体火箭燃料。[DMT]+[N3]-和[DMT]+[CN]-离子液态岩石燃料在肼/2-羟乙基肼混合溶液中的粘度分别为1.34 ~ 101 cP和1.29 ~ 80.5 cP。本研究合成的离子液体火箭燃料的Idt(100ms以下)、Td(150℃以上)、d(1.00 g/cm3以上)和η (40.0~ 100 cP)满足了所用液体火箭燃料的范围,可以作为火箭燃料使用。
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