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Strong magnetic field effect on the nucleation of a highly undercooled Co-Sn melt

机译:强磁场对高度过冷的Co-Sn熔体的成核作用

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摘要

High magnetic field is a powerful tool to tune the microstructure and improve the properties of materials. In this report, the nucleation behavior of undercooled Co76Sn24 near eutectic alloy under strong homogeneous and gradient magnetic fields have been investigated using glass slag fluxing method in a 12 T superconducting magnet. The mean undercooling of the undercooled melt is not altered by homogeneous magnetic field but depressed by gradient magnetic field. The highest temperature during recalescence is strongly altered by magnetic field, where an enhancement effect is observed under gradient magnetic field and an opposite effect in homogeneous magnetic field. The reason is interpreted by discussion about the magnetic field on the thermodynamics of nucleation and also the purifying effect of the glass slag, the magnetic properties and the magnetic force exerted on the undercooled melt.
机译:强磁场是调节微观结构和改善材料性能的有力工具。在本报告中,使用玻璃渣通量法研究了在12 T超导磁体中过冷的Co76Sn24在共晶和强梯度磁场附近的成核行为。过冷熔体的平均过冷不会被均匀磁场改变,而会被梯度磁场抑制。重磁场期间的最高温度会受到磁场的强烈影响,其中在梯度磁场下观察到增强效果,而在均匀磁场下观察到相反的效果。通过讨论关于成核的热力学的磁场以及玻璃渣的净化效果,施加在过冷熔体上的磁性能和磁力的解释来解释其原因。

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