MICRO- AND NANOMICROMATERIALS IN PYROTECHNICS

Zh. Aimasheva, D. Ismailov, V. F. Grishenko, S. Bellucci, G. Partizan, T. B. Koshtibayev
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Abstract

Due to their unique physical and chemical properties, which play an unrivaled role in enhancing the performance and safety of pyrotechnic substances, carbon nanomaterials have garnered significant interest from researchers in recent years. In this paper, carbon nanostructures prepared by electric arc synthesis are identified as C60 and C70 fullerene carbon blacks. The carbon black particles derived from the synthesized fullerenes exhibit a porous and rough morphology, with sizes ranging from 32 to 190 nm. The experimental results indicate the potential use of synthesized fullerene soot as a constituent component of pyrotechnic composites. The dependence of pyrotechnic composite compositions on combustion time has been determined by selecting potassium nitrate, nanoscale fullerenes, composite carbon blacks, wood coals, and aluminum fillers as matrix materials. According to the findings, the combustion time of the composite composition increases as the content of fullerene soot in the pyrotechnic composite composition increases.
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烟火中的微米和纳米材料
由于碳纳米材料具有独特的物理和化学特性,在提高烟火物质的性能和安全性方面发挥着无与伦比的作用,因此近年来引起了研究人员的极大兴趣。本文将电弧合成法制备的碳纳米结构确定为 C60 和 C70 富勒烯碳黑。由合成富勒烯制备的炭黑颗粒呈现多孔和粗糙的形态,大小从 32 纳米到 190 纳米不等。实验结果表明,合成富勒烯碳黑可用作烟火复合材料的成分。通过选择硝酸钾、纳米富勒烯、复合碳黑、木炭和铝填料作为基体材料,确定了烟火复合材料成分对燃烧时间的依赖性。研究结果表明,随着烟火复合材料中富勒烯烟尘含量的增加,复合材料的燃烧时间也会增加。
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