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Shape Anisotropy Evolution of Co Grains in Cu―30at%Co Alloy by Annealing under Magnetic Field

机译:磁场退火对Cu―30at%Co合金中Co晶粒形状各向异性的影响

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The shape change of the fee-Co grains during the coarsening process was examined by using the Cu―30at%Co alloys. The fine Co-rich particles were uniformly distributed in the rapidly solidified alloys when the cooling rate was sufficiently large to prevent the dendritic growth of the primary Co phase. The influence of the magnetic field on the shape change of the Co grains was clearly observed when the rapidly solidified particles were annealed at 1 173K under 10T. The average angle between the long-axis and the magnetic field direction at 10T is 15 degrees smaller than the average value at 0T. The coarsening model suggested that the shape magnetic anisotropy energy acts as a driving force of the coarsening in the region that the Co grain size is several μm. The static magnetic energy due to the shape anisotropy has an alternative potential to produce the aligned structure.
机译:通过使用Cu〜30at%Co合金检查了粗化过程中的Fe-Co晶粒的形状变化。当冷却速率足够大以防止初级Co相的树枝状生长时,富含Co的细颗粒均匀地分布在快速凝固的合金中。当快速固化的颗粒在10T下于1 173K退火时,可以清楚地观察到磁场对Co晶粒形状变化的影响。长轴与磁场方向之间的平均角度在10T处比在0T处的平均值小15度。粗化模型表明,在Co晶粒尺寸为几μm的区域中,形状磁各向异性能作为粗化的驱动力。由于形状各向异性而产生的静磁能具有产生排列结构的替代势能。

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