固体-火焰燃烧方式下SHS体系合成硅酮

Mariya Valyaeva, L. Kondratieva
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引用次数: 0

摘要

研究目的是在二氧化硅(砂)-叠氮化钠-硅和卤化铝体系的固体火焰燃烧模式下合成莎龙粉。本文致力于的任务是找出初始电荷组成(从几种砂样中选择杂质量和级配因子最好的),在固体火焰燃烧模式下合成得到Si3Al3O3N5硅烷。在SHS-Az模式下获得和分析合成产物的研究方法:叠氮化钠和卤化物在SHS-Az实验室反应器中自传播高温合成,ARL X'trA-138衍射仪X射线分数分析,JSM-6390A扫描电镜微观结构研究。这项工作的新颖之处在于,首次将SHS-Az方法应用于以滩砂为二氧化硅的体系中合成唾液的研究。固-火焰燃烧法合成sialon的研究结果表明,最终产物除β-Si3Al3O3N5外,还含有Si3N4: AlN、Si、naf和Na3AlF6等相。研究发现,在燃烧过程中,形成均匀颗粒的产物结合成团块。组成产品的颗粒的平均尺寸为180-230纳米。结论:在二氧化硅(砂)-叠氮化钠-硅和卤化铝体系的固-火焰燃烧模式下,得到了Si3Al3O3N5 sialon。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
SYNTHESIS OF SIALONE FROM SHS SYSTEM IN THE MODE OF SOLID-FLAME COMBUSTION
The study objective is to synthesize sialon powder in the mode of solid-flame combustion of silicon dioxide (sand) - sodium azide – silicon and aluminum halogenide systems. The task to which the paper is devoted is to find out the initial charge composition (choosing from several sand samples the best in terms of the amount of impurities and the gradation factor), which synthesis gives Si3Al3O3N5 sialon in the mode of solid-flame combustion. Research methods used to obtain and analyze the synthesized product in SHS-Az mode: self-propagating high-temperature synthesis using sodium azide and halogenides in SHS-Az laboratory reactor, X-ray fractional analysis on ARL X'trA-138 diffractometer and the study of microstructure by a scanning electron microscope JSM-6390A. The novelty of the work is in the fact that for the first time SHS-Az method is applied to conduct research on the synthesis of sialon from systems which use bank sand as silicon dioxide. The study results on the synthesis of sialon in the mode of solid-flame combustion show that the final product, in addition to β-Si3Al3O3N5 consists of some more phases such as Si3N4: AlN, Si, naf and Na3AlF6. It is found out that during combustion the formed uniform particles of the product are combined into agglomerate. The average size of the particles that make up the product is 180-230 nm. Conclusions: it is found out that Si3Al3O3N5 sialon is obtained in the mode of solid-flame combustion of silicon dioxide (sand) - sodium azide – silicon and aluminum halogenide systems.
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