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Influence of an axial high magnetic field on the liquid-solid transformation in Al-Cu hypoeutectic alloys and on the microstructure of the solid

机译:轴向高磁场对Al-Cu亚共晶合金液固相变及固体组织的影响

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摘要

The influence of an axial high magnetic field (up to 10 T) on the liquid-solid interface morphology and microstructure of the solid has been investigated experimentally during Bridgman growth of Al-Cu hypoeutectic alloys. It is found that the field causes the interface to become destabilized and irregular, and promotes planar-cellular and cellular-dendritic transformation. The field has a great influence on the cellular and dendrite array morphology. Indeed, the field causes severe distortion in the cellular array and enhances cell branching. The field makes the morphology of the dendrite array more complex and, with the increase of the magnetic field intensities and decrease of the growth velocities, the dendrites become broken and orientate with the (III)-direction along the solidification direction instead of the (I 00 -direction. Furthermore, the field also enlarges the primary dendrite spacing and promotes the branching of the dendrites to form higher-order arms. The above phenomena may be attributed to the change of the equilibrium partition coefficient k and the liquidus slope m(L) caused by the field, the magnetic anisotropy of the alpha-Al crystal and the flow created by the thermoelectromagnetic convection. (c) 2006 Acta Materialia Inc. Published by Elsevier Ltd. All rights reserved.
机译:在Al-Cu亚共晶合金的Bridgman生长过程中,通过实验研究了轴向高磁场(高达10 T)对固体液固界面形貌和微观组织的影响。研究发现,该场导致界面变得不稳定和不规则,并促进平面-细胞和细胞-树突转化。该场对细胞和枝晶阵列形态有很大影响。事实上,该场会导致细胞阵列严重失真并增强细胞分支。磁场使枝晶阵列的形貌更加复杂,并且随着磁场强度的增加和生长速度的减小,枝晶被破坏并沿凝固方向(III)方向而不是(I 00方向)方向取向。此外,该场还扩大了初级枝晶间距,促进了枝晶的分支,形成高阶臂。上述现象可归因于场引起的平衡分配系数k和液相线斜率m(L)的变化、α-Al晶体的磁各向异性以及热电磁对流产生的流动。(c) 2006 Acta Materialia, Inc.,由Elsevier Ltd.出版。保留所有权利。

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