Study of heat and mass transfer processes in the Fe-Sn reaction crucible in the presence of high-density electric current

V.E. Fomin, A.V. Novotelnova, G.A. Bolkunov, F.Yu. Bochkanov, D.Yu. Karpenkov
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Abstract

In the search for new magnetically ordered phases of materials, solid-state synthesis technologies in reaction crucibles are used. The final result of the synthesis process in reaction crucibles is conditioned, in particular, by technological factors, the mode of current flow and its density, the achieved temperature in the reaction zone, exposure time, geometrical parameters of the crucible and the reaction zone, etc. The paper presents the results of influence investigation of the reaction volume filling degree with tin melt on the processes of heat and mass transfer during its electrothermal treatment. A model describing diffusion processes in the reaction zone during the synthesis of iron and tin intermetallides under electrothermal treatment has been proposed. The diffusion process in the reaction crucibles of the iron-tin system was investigated by the finite element method in the Comsol Multiphysics software environment. It is shown that the decrease in the degree of filling of the reaction crucible with synthesis components leads to a change in the distribution of current density and a decrease in the temperature in the reaction zone, which affects the mass transfer processes. The results of the work can be used in the analysis of experimental data on the production of intermetallides by reaction synthesis and determination of the necessary technological parameters for the synthesis of new materials.
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高密度电流存在下铁锡反应坩埚内传热传质过程的研究
在寻找新的磁性有序相的材料,固体合成技术在反应坩埚被使用。反应坩埚中合成过程的最终结果主要受工艺因素、电流流动方式及其密度、反应区达到的温度、暴露时间、坩埚和反应区的几何参数等因素的制约。本文介绍了锡熔体的反应体积填充程度对其电热过程中传热传质过程的影响研究结果。提出了一种描述电热合成铁锡金属间化物反应区扩散过程的模型。在Comsol Multiphysics软件环境下,采用有限元方法研究了铁锡体系在反应坩埚中的扩散过程。结果表明,合成组分填充反应坩埚的程度降低,导致反应区电流密度分布的变化和温度的降低,从而影响传质过程。所得结果可用于反应合成生产金属间化物的实验数据分析和新材料合成所需工艺参数的确定。
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CiteScore
0.70
自引率
0.00%
发文量
102
审稿时长
8 weeks
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