System design and hot zone optimization of monocrystalline silicon directional solidification furnace for PV application
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference12 articles.
1. Nucleation and bulk growth control for high efficiency silicon ingot casting;Zhang;Journal of Crystal Growth,2011
2. 3D time-dependent numerical study of the influence of the melt flow on the interface shape in a silicon ingot casting process;Vizman;Journal of Crystal Growth,2007
3. Modeling of incorporation of O, N, C and formation of related precipitates during directional solidification of silicon under consideration of variable processing parameters;Reimann;Journal of Crystal Growth,2010
4. About the formation and avoidance of C and N related precipitates during directional solidification of multi-crystalline silicon from contaminated feedstock;Reimann;Journal of Crystal Growth,2010
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1. Transient Simulation on the Growth of Mono-like Silicon Ingot in DS Process Using Crucible with Plano-Concave Bottom for PV Applications;Silicon;2021-05-12
2. Comparative analysis of thermal stress induced dislocations in 7 kg, 40 kg and 330 kg multi-crystalline silicon ingots grown by directional solidification;Journal of Crystal Growth;2020-11
3. Reduction of Carbon and Oxygen Impurities in mc-Silicon Ingot Using Molybdenum Gas Shield in Directional Solidification Process;Silicon;2020-10-22
4. Simulation of Effect of Surface Tension in Molten Silicon During mc-Silicon Growth Process for PV Applications;Silicon;2017-08-04
5. Upgrade of the hot zone for large-size high-performance multi-crystalline silicon ingot casting;Journal of Crystal Growth;2016-05
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