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Heptadecane and Gallium Crystallization in Hydrodynamic Czochralski Model

Heptadecane and Gallium Crystallization in Hydrodynamic Czochralski Model
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出处 《材料科学与工程(中英文A版)》 2015年第9期351-360,共10页 Journal of Materials Science and Engineering A
关键词 水动力模型 结晶过程 对流传热 计算模型 熔融温度 结晶质量 流动结构 Czochralski model, crystallization, fluid flows, heat transfer.
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参考文献9

  • 1Berdnikov, V. S., Prostomolotov, A. I. and Verezub, N. A. 2014. "The Phenomenon of 'Cold Plume' Instability in Czochralski Hydrodynamic Model: Physical and Numerical Simulation." Journal of Crystal Growth 401 : 106-10.
  • 2Berdnikov, V. S., Vinokourov, V. A., Vinokourov, V. V., Gaponov, V. A. and Markov, V. A. 2011. "General Regularities of Convective Heat Transfer in the Crucible Melt-Crystal System of Czochralski Method and Their Influence on the Solidification Front Shape." Vestnik of the Lobachevsky State University of Nizhni Novgorod 4 (3): 641-3.
  • 3Carruthers, J. R. 1976. "Flow Transitions and Interface Shapes in Czochralski Growth of Oxide Crystals." Journal of Crystal Growth 36: 212-4.
  • 4Basu, B., Enger, S., Breuer, M. and Durst, F. 2001. "Effect of Crystal Rotation on the Three-Dimensional Mixed Convection in the Oxide Melt for Czochralski Growth." Journal of Crystal Growth 230: 148-54.
  • 5Verezub, N. A., Nutsubidze, M. N. and Prostomolotov, A. I. 1995. "Convective Heat Transfer in the Melt during the Growth of Single Crystals of Garnet Structure by the Czochralski Method." Fluid Dynamics 30 (4): 510-7.
  • 6Miller, D. C. and Pernell, T. L. 1982. "Fluid Flow Patterns in a Simulated Garnet Melt." Journal of Crystal Growth 58: 253-60.
  • 7Evstratov, I. Y., Kalaev, V. V., Zhmakin, A. I., Makarov, Y. N., Abramov, A. G. and Ivanov, N. G. et al. 2002. "Numerical Study of 3D Unsteady Melt Convection during Industrial-Scale CZ Si-Crystal Growth." Journal of Crystal Growth 237-239: 1757-61.
  • 8Vizman, D., Grabner, O. and Muller, G. 2001. "Three-Dimensional Numerical Simulation of Thermal Convection in an Industrial Czochralski Melt: Comparison to Experimental Results." Journal of Crystal Growth 233: 687-98.
  • 9Muiznieks, A. and Krauze, A. 2006. "3D Transient LES Modeling of Turbulent Melt Flow in a Laboratory Model for Large CZ Industrial Silicon Crystal Growth Systems." In Proceedings of the International Scientific Colloquium on Modelling for Material Processing (Riga, Latvia), 83 -8.

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