首页> 外文期刊>Metallurgical and Materials Transactions, A. Physical Metallurgy and Materials Science >Thermoelectric Magnetohydrodynamic Flows and Their Induced Change of Solid-Liquid Interface Shape in Static Magnetic Field-Assisted Directional Solidification
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Thermoelectric Magnetohydrodynamic Flows and Their Induced Change of Solid-Liquid Interface Shape in Static Magnetic Field-Assisted Directional Solidification

机译:静磁场辅助定向凝固中热电磁流体流动及其固液界面形状的变化

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摘要

Applying static magnetic field can produce flows (thermoelectric magnetohydrodynamic flows, TEMHDF) in the melt by interacting with the thermoelectric currents (TEC) during solidification of metals. A physical model was proposed to interpret how these TEC appear at the solid-liquid interface and verified by a corresponding simulation. The influences of TEMHDF on solidification were investigated through both ex-situ experiments and n situ observations by means of synchrotron X-ray radiography. The 3D numerical simulations of TEMHDF were performed for these two cases, respectively, and suggested that both the change of interface shape with different transverse static magnetic fields demonstrated by the ex-situ experiments and the real time observed interface shape varying under a 0.08 T transverse static magnetic field could attribute to the TEMHDF advanced solid-liquid interface in the static magnetic field-assisted directional solidification. The TEMHDF produced by an axial static magnetic field were also computed along with the interface change predicted based on which is good in line with the published experimental results. This study of TEMHDF and their impacts on the solid-liquid interface shape provides a method to tailor the structure during directional solidification using static magnetic field. (C) The Minerals, Metals & Materials Society and ASM International 2015
机译:通过在金属凝固过程中与热电流(TEC)相互作用,施加静磁场会在熔体中产生流动(热电磁流体动力流动,TEMHDF)。提出了一个物理模型来解释这些TEC如何出现在固液界面上,并通过相应的模拟进行验证。 TEMHDF对凝固的影响通过异地实验和同步X射线射线照相的原位观察进行了研究。分别针对这两种情况进行了TEMHDF的3D数值模拟,结果表明,通过异位实验证明了不同横向静磁场下界面形状的变化,以及在0.08 T横向下实时观察到的界面形状的变化静磁场可归因于TEMHDF在静磁场辅助定向凝固中的先进固液界面。还计算了轴向静磁场产生的TEMHDF,并根据预测的界面变化进行了计算,这与已发表的实验结果一致。 TEMHDF及其对固液界面形状的影响的研究为使用静磁场定向凝固过程中的结构提供了一种方法。 (C)矿物,金属和材料学会和ASM International 2015

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