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Influences of Multilayer Graphene and Boron Decoration on the Structure and Combustion Heat of Al

机译:多层石墨烯和硼装饰对Al结构和燃烧热量的影响

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摘要

To improve the engine-driven performance of propellants, high-energy alloys such as Al and Mg are usually adopted as annexing agents. However, there is still room for improvement in the potential full utilization of alloy energy. In this study, we investigated how to improve combustion efficiency by decorating Al3Mg2 alloy with multilayer graphene and amorphous boron. Scanning electron microscopy and Raman tests showed that decorating with multilayer graphene and amorphous boron promoted the dispersion of Al3Mg2 alloy. The results showed that decorating with 1% boron and 2% multilayer graphene improved the combustion heat of Al3Mg2 alloy to 32.8 and 30.5 MJ/kg, respectively. The coexistence of two phases improved the combustion efficiency of the matrix Al3Mg2 alloy.
机译:为了提高推进剂的发动机驱动性能,通常采用高能合金,例如Al和Mg,通常是附图。然而,仍有潜在的完全利用合金能量的余地。在这项研究中,我们研究了如何通过用多层石墨烯和无定形硼装饰Al3mg2合金来提高燃烧效率。扫描电子显微镜和拉曼试验表明,用多层石墨烯和无定形硼装饰促进Al3Mg2合金的分散。结果表明,用1%硼和2%多层石墨烯装饰,分别改善了Al3mg2合金的燃烧热量至32.8和30.5mJ / kg。两相的共存改善了基质Al3mg2合金的燃烧效率。

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