An experimental approach to determine the heat transfer coefficient in directional solidification furnaces
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference17 articles.
1. Control of interface shape in the vertical bridgman-stockbarger technique
2. Influence of insulation on stability of interface shape and position in the vertical Bridgman-Stockbarger technique
3. Thermal convection during bridgman crystal growth
4. Radial segregation induced by natural convection and melt/solid interface shape in vertical bridgman growth
5. An analytical approach to thermal modeling of Bridgman-type crystal growth
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1. Correlation between thermal properties, growth parameters and low segregation coefficient in (K, Na)NbO3-based growth by Bridgman-Stockbarger route;Materialia;2023-12
2. Structural, Dielectric, Electrical, and Thermal Properties of the Ce-Doped Ba2TiMoO6 Double Perovskite;Journal of Heat Transfer;2022-09-29
3. An experimental–numerical method for estimating heat transfer in a Bridgman furnace;Applied Thermal Engineering;2014-06
4. Analysis of radial segregation in directionally solidified Hg0.89Mn0.11Te;Journal of Crystal Growth;2004-12
5. Theoretical model for heat transfer in the single crystal making;Revista Facultad de Ingeniería Universidad de Antioquia;2002-11-30
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