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Micro-fibre based Porous Composite Propellants with High Regression Rates

机译:具有高回归速率的微纤维基多孔复合推进剂

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摘要

Harnessing energy at micro-scale from high energy sources has gained significance in recent times for space propulsion and other applications. Conventional solid rocket propellants have advantages in terms of being efficient, compact and safe to handle, though with much lower regression rates as compared to solid explosives. An approach to high regression rates in composite propellants is demonstrated in the present work by the enhancement of fuel-oxidiser interaction, and by the incorporation of micro-scale porosity into the propellant grain. The porous polystyrene-ammonium perchlorate grain designed in this work, based on electrospun micro-fibres and aqueous impregnation, exhibits burning rates more than 25 times as compared to the non-porous grain. Such high regression rates using insensitive propellant compositions have practical implications in the development of micro-thrusters, and in gas generating devices such as MAV launch systems and turbine starters. Detailed preparatory procedure, characterisation techniques, and flame regression studies are included in this paper.
机译:近年来,从高能量来源中利用微观尺度的能量在空间推进和其他应用中已变得越来越重要。传统的固体火箭推进剂在效率,紧凑性和安全性方面具有优势,尽管与固体炸药相比具有更低的回归速度。在本工作中,通过增强燃料与氧化剂的相互作用,以及通过将微孔孔隙掺入推进剂颗粒中,可以证明在复合推进剂中具有高回归速率的方法。在这项工作中设计的多孔聚苯乙烯-高氯酸铵颗粒基于电纺微纤维和水性浸渍,其燃烧速率是无孔颗粒的25倍以上。使用不敏感的推进剂组合物的如此高的回归速率在微推力器的开发以及气体产生装置(例如MAV发射系统和涡轮启动器)中具有实际意义。本文包括详细的准备程序,表征技术和火焰回归研究。

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