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Formulation, Casting, and Evaluation of Paraffin-Based Solid Fuels Containing Energetic and Novel Additives for Hybrid Rockets

机译:含混合动力火箭用高能和新型添加剂的石蜡基固体燃料的配制,铸造和评估

摘要

This investigation studied the inclusion of various additives to paraffin wax for use in a hybrid rocket motor. Some of the paraffin-based fuels were doped with various percentages of LiAlH4 (up to 10%). Addition of LiAlH4 at 10% was found to increase regression rates between 7 - 10% over baseline paraffin through tests in a gaseous oxygen hybrid rocket motor. Mass burn rates for paraffin grains with 10% LiAlH4 were also higher than those of the baseline paraffin. RDX was also cast into a paraffin sample via a novel casting process which involved dissolving RDX into dimethylformamide (DMF) solvent and then drawing a vacuum on the mixture of paraffin and RDX/DMF in order to evaporate out the DMF. It was found that although all DMF was removed, the process was not conducive to generating small RDX particles. The slow boiling generated an inhomogeneous mixture of paraffin and RDX. It is likely that superheating the DMF to cause rapid boiling would likely reduce RDX particle sizes. In addition to paraffin/LiAlH4 grains, multi-walled carbon nanotubes (MWNT) were cast in paraffin for testing in a hybrid rocket motor, and assorted samples containing a range of MWNT percentages in paraffin were imaged using SEM. The fuel samples showed good distribution of MWNT in the paraffin matrix, but the MWNT were often agglomerated, indicating that a change to the sonication and mixing processes were required to achieve better uniformity and debundled MWNT. Fuel grains with MWNT fuel grains had slightly lower regression rate, likely due to the increased thermal conductivity to the fuel subsurface, reducing the burning surface temperature.
机译:这项研究研究了用于混合火箭发动机的石蜡中包含的各种添加剂。一些基于石蜡的燃料掺有各种百分比的LiAlH4(最高10%)。通过在气态氧气混合动力火箭发动机中进行的测试,发现添加10%的LiAlH4可使基线石蜡的回归率提高7-10%。 LiAlH4含量为10%的石蜡颗粒的质量燃烧率也高于基线石蜡。还通过一种新颖的浇铸工艺将RDX浇铸到石蜡样品中,该方法包括将RDX溶解在二甲基甲酰胺(DMF)溶剂中,然后在石蜡和RDX / DMF的混合物上抽真空以蒸发掉DMF。已经发现,尽管所有的DMF都被去除了,但是该过程不利于产生小的RDX颗粒。缓慢沸腾产生石蜡和RDX的不均匀混合物。过热DMF导致快速沸腾可能会减小RDX粒度。除石蜡/ LiAlH4颗粒外,还将多壁碳纳米管(MWNT)浇铸在石蜡中以在混合火箭发动机中进行测试,并使用SEM对包含一定范围的MWNT百分比的石蜡样品进行了成像。燃料样品显示MWNT在石蜡基质中分布良好,但MWNT通常会聚结,这表明需要对超声处理和混合过程进行更改,以实现更好的均匀性和MWNT的去捆。带有MWNT燃料颗粒的燃料颗粒的回归速率略低,这可能是由于增加了对燃料表面的热导率,从而降低了燃烧表面温度。

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