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Electrospray Formation of Gelled Nano-Aluminum Microspheres with Superior Reactivity

机译:具有优异反应活性的凝胶化纳米铝微球的电喷雾形成

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摘要

Nanometallic fuels with high combustion enthalpy, such as aluminum, have been proposed as a potential fuel replacement for conventional metallic fuel to improve propellant performance in a variety of propulsive systems. Nevertheless, nanometallic fuels suffer from the processing challenges in polymer formulations such as increased viscosity and large agglomeration, which hinder their implementation. In this letter, we employ electrospray as a means to create a gel within a droplet, via a rapid, solvent evaporation-induced aggregation of aluminum nanoparticles, containing a small mass fraction of an energetic binder. The gelled aluminum microspheres were characterized and tested for their burning behavior by rapid wire heating ignition experiments. The gelled aluminum microspheres show enhanced combustion behavior compared to nanoaluminum, which possibly benefits from the nitrocellulose coating and the gelled microstructure, and is far superior to the corresponding dense micrometer-sized aluminum.
机译:具有高燃烧焓的纳米金属燃料,例如铝,已经被提议作为常规金属燃料的潜在燃料替代品,以改善各种推进系统中的推进剂性能。然而,纳米金属燃料在聚合物配方中遭受加工挑战,例如粘度增加和大量附聚,这阻碍了其实现。在这封信中,我们采用电喷雾作为一种手段,通过快速,溶剂蒸发诱导的铝纳米颗粒的聚集,在液滴内形成凝胶,其中含有少量的高能粘合剂。表征了凝胶化的铝微球,并通过快速线加热点火实验测试了其燃烧行为。与纳米铝相比,胶化的铝微球显示出增强的燃烧性能,这可能得益于硝酸纤维素涂层和胶化的微结构,并且远远优于相应的致密的微米级铝。

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