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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Influence of high magnetic field on the liquid-liquid phase separation behavior of an undercooled Cu-Co immiscible alloy
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Influence of high magnetic field on the liquid-liquid phase separation behavior of an undercooled Cu-Co immiscible alloy

机译:高磁场对挤出Cu-Co不混溶合金液 - 液相分离行为的影响

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摘要

In this work, the influence of 10 T high magnetic field on the liquid-liquid phase separation behavior of Cu-33.33 at.%Co immiscible alloy was systematically investigated. The results show that the separation behavior was significantly altered via the application of a high magnetic field. Both the Co-rich phase and the non-ferromagnetic Cu-rich phase are found to be elongated along the magnetic field direction due to the action of static magnetic energy and the coordinating of deformation. The relatively homogeneous microstructure of uniform dispersion of Co-rich phase on the matrix is obtained in the direction perpendicular to the magnetic field. The drag force induced by the thermoelectric magnetic convection under a high magnetic field hinders the solute transport of Co-rich phase, leading to a decline in the number of Cu-rich phase produced by the secondary decomposition. Moreover, the applied high magnetic field results in the variations of the undercooling during rapid solidification. The finally solidified Cu -Co alloy in a magnetic field of 10 T with higher undercooling exhibited a slightly lower saturation magnetization and higher coercivity and residual magnetizations. The present research provides new insights into the influence of high magnetic field on the liquid-liquid phase separation behavior of immiscible alloys. (C) 2020 Elsevier B.V. All rights reserved.
机译:在这项工作中,10T高磁场对Cu-33.33液 - 液相分离行为的影响。%CO不混溶合金被系统地研究。结果表明,通过应用高磁场显着改变分离行为。由于静态磁能的作用和变形的协调,发现富含共聚的相和富含富富铬铜的相位沿磁场方向延长。在垂直于磁场的方向上获得基质上的共富相位均匀分散的相对均匀的微观结构。在高磁场下热电磁对流引起的阻力阻碍了通过二次分解产生的Cu的富相位数下降的溶质转运。此外,所施加的高磁场导致在快速凝固过程中过冷的变化。磁场中最终固化的Cu -co合金,10T的磁场,较高过冷却呈稍低的饱和磁化强度和更高的矫顽力和剩余磁化。本研究为高磁场对不混溶合金的液 - 液相分离行为的影响提供了新的洞察。 (c)2020 Elsevier B.v.保留所有权利。

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