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Effect of a high magnetic field on the growth of epsilon-CuZn5 dendrite during directionally solidified Zn-rich Zn-Cu alloys

机译:高磁场对定向凝固富锌Zn-Cu合金中ε-CuZn5枝晶生长的影响

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The effect of an axial high magnetic field on the growth of epsilon-CuZn5 dendrite during directionally solidified Zn-rich Zn-Cu peritectic alloys was investigated. Experimental results revealed that the magnetic field caused the deformation of the epsilon-CuZn5 dendrite and induced the occurrence of the columnar-to-equiaxed transition (CET) of the epsilon-CuZn5 dendrite. Further, EBSD technology was applied to study the dendrite morphology and crystalline orientation in details. It was found that the regular epsilon-CuZn5 columnar dendrite formed and was oriented with the < 0001 >-crystal direction along the solidification direction at moderate growth speeds (i.e., 10-50 mu m/s). When a high magnetic field was applied, equiaxed grains with various random orientations formed. Further, the magnetic crystalline anisotropy of the epsilon-CuZn5 crystal was studied. Experimental results showed that the epsilon-CuZn5 crystal owns a magnetic crystalline anisotropy and the < 0001 >-crystal direction is its easy magnetization axis. Moreover, numerical results indicated that a thermoelectric magnetic force acted on the solid near the liquid/solid interface and increased linearly with the magnetic field. The degeneration and breakup of the epsilon-CuZn5 dendrites during directional solidification of the Zn-Cu alloys under the magnetic field may be primarily due to the thermoelectric magnetic force acting on the solid. (C) 2015 Published by Elsevier Inc.
机译:研究了轴向强磁场对定向凝固富锌富锌铜包晶合金中ε-CuZn5枝晶生长的影响。实验结果表明,磁场引起ε-CuZn5枝晶的形变,并引起ε-CuZn5枝晶的柱状到等温转变(CET)的发生。此外,EBSD技术被用于详细研究枝晶形态和晶体取向。发现以适度的生长速度(即10-50μm/ s)形成并沿凝固方向以<0001>-结晶方向取向的规则ε-CuZn5柱状枝晶。当施加强磁场时,会形成具有各种随机取向的等轴晶粒。此外,研究了ε-CuZn5晶体的磁晶体各向异性。实验结果表明,ε-CuZn5晶体具有磁性晶体各向异性,<0001>-晶体方向为其易磁化轴。此外,数值结果表明,热电磁力作用在液/固界面附近的固体上,并随磁场线性增加。在磁场作用下Zn-Cu合金定向凝固过程中,ε-CuZn5树枝晶的变性和破裂可能主要是由于作用在固体上的热电磁力引起的。 (C)2015年由Elsevier Inc.出版

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