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Steric Stabilization of Colloidal Aluminium Particles for Advanced Metalized-Liquid Rocket Propulsion Systems

机译:先进金属化 - 液体火箭推进系统的胶体铝颗粒的空间稳定

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The achievement of stable colloidal suspensions of reactive metal powders in liquid propellants is crucial for obtaining enhanced thrust per unit mass. Aluminium is of interest due to its availability, stability, and high combustion enthalpy (32 000 J/g). In this manuscript, ultrafine spherical aluminium particles with the average size of 15 m are produced by wet milling. Aluminium particles are effectively surface-modified with a polymeric surfactant and sterically stabilized in an organic solvent (toluene). Organically modified aluminium demonstrates a drastic change in surface properties from hydrophilic to hydrophobic, with effective transfer from the aqueous to organic phase. The stabilized particles are effectively dispersed in a liquid rocket pro-pellant (hydrazine). The impact of aluminium particles on hydrazine combustion characteristics is evaluated by using a thermodynamic code named ICT (Institute of Chemical Technology in Germany, 2008). Aluminium particles offer an increase in the combustion temperature, oxygen balance, characteristic exhaust velocity, and specific impulse. The optimum solid loading level of aluminium in the hydrazine fuel is found to be 6 wt.%.
机译:在液体推进剂中的反应性金属粉末的稳定胶体悬浮液的实现对于获得每单位质量增强的推力至关重要。由于其可用性,稳定性和高燃烧焓(32 000 j / g),铝具有兴趣。在该稿件中,通过湿磨铣削产生平均尺寸为15μm的超细球形铝颗粒。用聚合物表面活性剂和在有机溶剂(甲苯)中有效地表面改性铝颗粒。有机修饰的铝证明了从亲水到疏水性的表面性质的激烈变化,具有从含水到有机相的有效转移。稳定化颗粒有效地分散在液体火箭型粒子(肼)中。通过使用名为ICT的热力学代码(德国化学技术研究所,2008),评估铝颗粒对肼燃烧特性的影响。铝颗粒燃烧温度,氧气平衡,排气速度和特定脉冲的增加。发现肼燃料中的铝的最佳固体加载水平为6重量%。%。

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