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首页> 外文期刊>Journal of propulsion and power >Organically-Capped, Nanoscale Alkali Metal Hydride and Aluminum Particles as Solid Propellant Additives
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Organically-Capped, Nanoscale Alkali Metal Hydride and Aluminum Particles as Solid Propellant Additives

机译:有机封端的纳米级碱金属氢化物和铝颗粒作为固体推进剂添加剂

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This Paper reports on organometallic composites, containing nanoscale aluminum and lithium-based hydride fuel particles, as solid propellant additives. Theoretical performance is evaluated for bimodal metal propellant formulations containing capped fuel additives (nanoMetallix LLC) and 32 mu m aluminum. Replacing aluminum with nanoMetallix capped fuel additives reduces specific impulse, adiabatic flame temperature, condensed-phase products, and hydrochloric acid. Combustion behavior is investigated using high-speed video techniques, including flame emission, laser backlit configurations, and a two-camera ratiometric bandpass emission technique used to detect lithium. Agglomeration behavior of the nanoMetallix particles at atmospheric pressure is similar to nanoaluminum (nAl), producing large aggregates that ignite quickly, increasing radiative heat feedback. Spectrally filtered video identifies lithium vapor around the nanoMetallix particles on and above the burning surface, suggesting lithium vapor is released close to the surface. Pressurized burning rate measurements indicate nanoMetallix-based propellant burning rates are up to approximately 14% higher than similar nAl-based propellants at and below 6.89 MPa. Above this pressure, nanoMetallix propellants exhibit plateau pressure dependence, likely an effect of the different capping agents used. This Paper shows organically-capped nanoscale particles are a promising alternative to nano/microaluminum in composite solid propellant formulations.
机译:本文报道了含有纳米铝和锂基氢化物燃料颗粒作为固体推进剂的有机金属复合材料。对包含封端燃料添加剂(nanoMetallix LLC)和32微米铝的双峰金属推进剂配方的理论性能进行了评估。用nanoMetallix封盖的燃料添加剂替代铝可减少比脉冲,绝热火焰温度,冷凝相产物和盐酸。使用高速视频技术研究了燃烧行为,包括火焰发射,激光背光配置以及用于检测锂的两摄像机比率带通发射技术。纳米Metallix颗粒在大气压下的团聚行为与纳米铝(nAl)相似,会产生大的聚集体,这些聚集体会迅速点燃,从而增加了辐射热反馈。经光谱过滤的视频可识别出燃烧表面上和燃烧表面上的nanoMetallix颗粒周围的锂蒸气,表明锂蒸气被释放到靠近表面的地方。加压燃烧速率测量表明,在6.89 MPa或以下时,基于纳米金属合金的推进剂燃烧速率比类似的基于nAl的推进剂高约14%。在此压力以上,nanoMetallix推进剂表现出平台压力依赖性,这可能是所使用的不同封端剂的作用。本文显示了有机封端的纳米级颗粒是复合固体推进剂配方中纳米/微铝的有前途的替代品。

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