Preparation of Large-Volume, Stable Composition Polycrystalline Mixture of Binary Solid Solutions

IF 0.9 4区 物理与天体物理 Q4 PHYSICS, CONDENSED MATTER Physics of the Solid State Pub Date : 2024-03-08 DOI:10.1134/S1063783424600237
A. I. Hashimova
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Abstract

Here, a new method of preparing a polycrystalline mixture with a large volume of stable composition from binary solid solutions is presented. For this purpose, several holes of small diameter (0.5–1 mm) are opened at the bottom of the quartz pot prepared for melting the alloy. The upper end of the mold made of quartz, according to the geometrical structure of the mixture, is connected to the bottom of the puta in such a way that the holes in the puta remain inside it and both volumes are hermetically connected. Such a “puta-mould” system is fixed in the device in such a way that the template (mould) of the mixture is in a vertical position. Appropriate masses of the components of the solid solution are placed in a crucible and melted under high vacuum conditions. After the molten liquid becomes homogeneous, inert gas with a pressure of 0.5–0.8 atm is injected into the working volume. Due to the pressure force exerted by the gas on the surface of the liquid, it rushes through the holes and fills the mold, where it crystallizes at a high speed. The mold is placed inside a thick-walled, heat-conducting cylinder connected to a running water-cooled body of the lower end unit. This ensures that crystallization occurs at a high speed. Thus, the composition has the same value throughout the prepared mixture. Using the method, an alloy containing 10 at % Si was prepared from the Ge–Si solid solution system. Calculation of the density of samples taken from different parts of the mixture confirmed that the composition was the same throughout the mixture.

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制备大容量、成分稳定的多晶二元固溶体混合物
摘要 本文介绍了一种从二元固溶体制备具有大量稳定成分的多晶混合物的新方法。为此,在准备熔化合金的石英锅底部开几个直径很小(0.5-1 毫米)的孔。根据混合物的几何结构,石英模具的上端与石英罐的底部相连,这样石英罐上的小孔就会留在石英罐内,两个体积就密封连接在一起。这种 "puta-模具 "系统被固定在设备中,使混合物的模板(模具)处于垂直位置。将适当质量的固体溶液成分放入坩埚中,在高真空条件下熔化。在熔融液体变得均匀后,将压力为 0.5-0.8 atm 的惰性气体注入工作容积。由于气体对液体表面施加的压力,液体冲过小孔,充满模具,并在模具中高速结晶。模具被放置在一个厚壁导热圆筒内,该圆筒与下端装置的运行水冷却体相连。这样可以确保高速结晶。因此,整个制备混合物的成分值是相同的。利用这种方法,从 Ge-Si 固溶体系统中制备出了含 10% Si 的合金。通过计算从混合物不同部分提取的样品的密度,证实整个混合物的成分是相同的。
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来源期刊
Physics of the Solid State
Physics of the Solid State 物理-物理:凝聚态物理
CiteScore
1.70
自引率
0.00%
发文量
60
审稿时长
2-4 weeks
期刊介绍: Presents the latest results from Russia’s leading researchers in condensed matter physics at the Russian Academy of Sciences and other prestigious institutions. Covers all areas of solid state physics including solid state optics, solid state acoustics, electronic and vibrational spectra, phase transitions, ferroelectricity, magnetism, and superconductivity. Also presents review papers on the most important problems in solid state physics.
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