Control of interface shape during high melting sesquioxide crystal growth by HEM technique
-
Add time:08/15/2019 Source:sciencedirect.com
During crystal growth in heat exchanger method (HEM) system, the shape of the growth interface changes with the proceeding of the growth process, which limits the crystal size and reduces the quality of the crystal. In this paper, a modified HEM system is proposed to control the interface shape for growth of sesquioxide crystals. Numerical simulation is performed to predict heat transfer, melt flow and interface shape during growth of high melting sesquioxide crystals by the heat exchanger method. The results show that a flat or slightly convex interface shape is beneficial to reduce the solute pileup in front of the melt/crystal interface and decrease the radial temperature gradient inside the crystal during growth of sesquioxide crystals. The interface shape can be controlled by adjusting the gap size d and lower resistance heater power during growth. The growth rate and the melt/crystal interface position can be obtained by two measured temperatures.
We also recommend Trading Suppliers and Manufacturers of LEAD SESQUIOXIDE (cas 1314-27-8). Pls Click Website Link as below: cas 1314-27-8 suppliers
Prev:Solution-processed phosphorus-tungsten oxide film as hole injection layer for application in efficient organic light-emitting diode
Next:Electronic structure of Sm3+ ions in YAG and cubic sesquioxide ceramics) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- Texture and sesquioxide effects on water-stable aggregates and organic matter in some tropical soils08/22/2019
- A Raman spectroscopic study of C-type rare earth sesquioxides08/21/2019
- Influence of sesquioxides on luminescence features of Nd3+ ions in PbO–PbF2–B2O3 glass system08/20/2019
- Influence of sesquioxides on fluorescence emission of Yb3 + ions in PbO–PbF2–B2O3 glass system08/19/2019
- Influence of some sesquioxides on up conversion in Ho3+−Er3+ co-doped PbO−SiO2 glass system08/18/2019
- Studies on optimizing sesquioxide contents to enhance luminescence efficiency of Pr3+ ions in PbO−PbF2−B2O3 glass system08/17/2019
- Electronic structure of Sm3+ ions in YAG and cubic sesquioxide ceramics08/16/2019
-
Health and Chemical more >


