Flow Driven by an Archimedean Helical Permanent Magnetic Field. Part II: Transient and Modulated Flow Behaviors

被引:0
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作者
Bo Wang
Xiaodong Wang
Yves Fautrelle
Jacqueline Etay
Xianzhao Na
Florin Baltaretu
机构
[1] University of Chinese Academy of Sciences,College of Materials Science and Opto
[2] Grenoble Institute of Technology/SIMAP/EPM,electronic Technology
[3] PHELMA,State Key Laboratory of Advanced Steel Processing and Products
[4] BP75,UTC Bucharest
[5] Central Iron and Steel Research Institute,undefined
[6] bd. Pache Protopopescu,undefined
来源
Metallurgical and Materials Transactions B | 2016年 / 47卷
关键词
Liquid Metal; Axial Velocity; Secondary Flow; Transient Process; Electromagnetic Force;
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摘要
The present study considers the transient and modulated flow behaviors of liquid metal driven by a helical permanent magnetic field. The transient process, in which the fluid at rest experiences an increase in the angular velocity, is observed both in secondary and global axial flow with duration time less than 1 second. The flow fields are measured quantitatively to reveal the evolution of the transient flow, and the transient process is due to the variation of the electromagnetic force. Besides, the modulated flow behaviors of global axial flow, which is significantly different from that of secondary flow, is expected to avoid flow-induced macrosegregation in solidification process if the modulated time is suitable because its direction reversed periodically with the modulated helical stirrer. In addition, an optimal modulation frequency, under which the magnetic field could efficiently stir the solute at the solidification front, exists both in secondary and global axial flow (0.1 Hz and 0.625 Hz, respectively). Future investigations will focus on additional metallic alloy solidification experiments.
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页码:3476 / 3488
页数:12
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