影响单晶表面生长形式起源的热过程建模

V. Yusim, S. Sarkisov, Raf K. Kalimullin, S. Petrov, Yuri Y. Kloss
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引用次数: 0

摘要

本文的目的是研究不同生长方式下熔体中热场不均匀性沿晶体生长轴的分布。方法。在SolidWorks Premium complex的框架内,在构建Bridgman、Czochralski和HDC(水平定向结晶)方法结晶装置几何模型的Flow Simulation软件包中,形成了曲线块状结构的基网格。通过求解热单元和水冷夹套的共轭问题,研究了不同生长方式下熔体内的热质传递过程和沿晶体生长轴的热场不均匀性分布。结果。本文给出了用Bridgman法和Czochralski法生长的晶体在垂直和横截面上温度分布的计算机模拟结果。得到了平面特征排列的图像。所得数据与已知钇铝石榴石晶体的相应实验结果完全一致。研究的意义。在考虑晶体生长机理的一般理论和三种主要生长方式结晶锋的形态不稳定性的基础上,对所得的计算机模拟结果进行了分析,证实了所得的多面生长形式的模型图的正确性。
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MODELING OF THERMAL PROCESSES AFFECTING THE ORIGIN OF FACIAL GROWTH FORMS IN SINGLE CRYSTALS
The aim of this work is to study the distribution of the thermal field inhomogeneity in the melt along the crystal growth axis for different growth methods. Methodology . Within the framework of the SolidWorks Premium complex, in the Flow Simulation package for the constructed geometric models of the crystallization apparatus of the Bridgman, Czochralski and HDC (horizontal directional crystallization) methods, a curvilinear block-structured base mesh was formed. The conjugate problem was solved in the thermal unit and the water-cooled jacket to study the processes of heat-mass transfer and the distribution of the thermal field inhomogeneity in the melt along the crystal growth axis for different growth methods. Results. The results of computer simulation of the distribution of temperature profiles over the vertical and cross sections of the crystals grown by the Bridgman and Czochralski methods are presented. Pictures of the characteristic arrangement of facets are obtained. The obtained data fully agree with the known corresponding experimental results for yttrium-aluminum garnet crystals. Research implications. The analysis of the obtained results of computer simulation, carried out on the basis of consideration of the general theory of crystal growth mechanisms and morphological instability of the crystallization front for the three main methods of growth, confirmed the correctness of the obtained model pictures of the appearance of faceted growth forms.
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