Effect of a High Magnetic Field on Eutectoid Point Shift and Texture Evolution in 0.81C-Fe Steel

Yudong Zhang, C. Esling, M. Calcagnotto, M. Gong, H. Klein, X. Zhao, L. Zuo
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引用次数: 6

Abstract

A 12 T magnetic field has been applied to the annealing process of a 0.81%C-Fe (wt.%). It is found that the magnetic field shifts the eutectoid carbon content from 0.77 wt.% to 0.83 wt.%. The statistical thermodynamic calculations were performed to calculate the eutectoid temperature change by the magnetic field. Calculation shows that the increase of the eutectoid temperature by a 12 T field is 29∘C. Synchrotron radiation measurements were performed to measure the pole figures of the samples and were analyzed by MAUD to determine the bulk texture of the ferrite phase In the field-treated and non field-treated samples. Results show that although there is no specific preferred orientation appearing by applying the magnetic field, slight enhancement of (001) fiber component occurs in both the sample normal direction (ND) and the transverse direction (TD). This effect might be related to the magnetic dipolar interaction between Fe atoms in the transverse field direction.
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强磁场对0.81C-Fe钢共析点移及织构演化的影响
采用12t磁场对0.81%C-Fe (wt.%)进行了退火处理。结果表明,磁场使共共析碳含量从0.77 wt左右发生偏移。%至0.83 %。用统计热力学方法计算了磁场作用下共析温度的变化。计算表明,12t的场使共析温度增加29°C。采用同步辐射测量方法测量了样品的极形,并用MAUD分析了磁场处理和非磁场处理样品中铁氧体相的体织构。结果表明,施加磁场后,虽然没有出现特定的择优取向,但在样品法向和横向上,(001)纤维组分都有轻微的增强。这种效应可能与横向场方向上铁原子间的磁偶极相互作用有关。
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