会议论文详细信息
9th International Symposium on Electromagnetic Processing of Materials
Experimental investigation on the buoyancy-induced flow in a model of the Czochralski crystal growth process
材料科学;物理学
Pal, J.^1 ; Franke, S.^2 ; Eckert, S.^2 ; Gerbeth, G.^2
HZDR Innovation GmbH, Bautzner Landstr. 400, Dresden
01328, Germany^1
Helmholtz-Zentrum Dresden-Rossendorf (HZDR), Bautzner Landstr. 400, Dresden
01328, Germany^2
关键词: Buoyancy induced flow;    Complex flow structures;    Electromagnetic stirring;    Experimental investigations;    External magnetic field;    Rayleigh;    Sensor configurations;    Ultrasound Doppler velocimetry;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/424/1/012011/pdf
DOI  :  10.1088/1757-899X/424/1/012011
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】

Within this paper we present a model experiment focusing on investigations of the flow field in a Czochralski puller. Low melting point liquid metals as GaInSn are an important tool to investigate the flow structure for such industrial processes. The topology of the prevailing thermally-driven convection might be very complex and is mainly determined by the aspect ratio of the liquid volume and the strength of the convection described by the characteristic dimensionless Grashof number. The measurements of the fluid flow have been conducted by means of the ultrasound Doppler velocimetry (UDV) with and without the influence of external magnetic fields. Two kinds of sensor configurations were used to investigate the flow. Firstly, measurements of the radial velocity component by means of single UDV transducers were carried out shortly below the melt surface across the entire diameter of the cylindrical liquid column at various azimuthal angles. Secondly, a vertically arranged UDV array was applied at the side of the cylinder to obtain more detailed information about the radial velocities in the covered meridional plane. The results reveal the complex flow structure of natural convection in a Czochralski crucible which gains in complexity with applied external magnetic fields.

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