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Investigation of Embedded Si/C System Exposed to a Hybrid Reaction of Centrifugal-Assisted Thermite Method

机译:离心辅助铝热法混合反应的嵌入式Si / C系统研究

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摘要

A novel method is proposed to study the behavior and phase formation of a Si+C compacted pellet under centrifugal acceleration in a hybrid reaction. Si+C as elemental mixture in the form of a pellet is embedded in a centrifugal tube. The pellet assembly and tube are exposed to the sudden thermal energy of a thermite reaction resulted in a hybrid reaction. The hybrid reaction of thermite and Si+C produced unique phases. X-ray diffraction pattern (XRD) as well as microstructural and elemental analyses are then investigated. XRD pattern showed formation of materials with possible electronic and magnetic properties. The cooling rate and the molten particle viscosity mathematical model of the process are meant to assist in understanding the physical and chemical phenomena took place during and after reaction. The results analysis revealed that up to 85% of materials converted into secondary products as ceramics-matrix composite.
机译:提出了一种新的方法来研究混合反应中在离心加速度下Si + C压实颗粒的行为和相形成。将Si + C作为颗粒形式的元素混合物包埋在离心管中。药丸组件和试管暴露于铝热反应的突然热能中,导致混合反应。铝铁矿和Si + C的杂化反应产生独特的相。然后研究了X射线衍射图谱(XRD)以及微观结构和元素分析。 XRD图谱显示形成具有可能的电子和磁性的材料。该方法的冷却速率和熔融颗粒粘度数学模型旨在帮助理解反应期间和之后发生的物理和化学现象。结果分析表明,多达85%的材料以陶瓷基复合材料的形式转化为副产品。

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