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Effects of high magnetic field heat treatment on the Microstructure of Fe-0.76C Alloy

机译:高磁场热处理对Fe-0.76%C合金组织的影响

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The present studies are to investigate the microstructure features during transformation from austenite to ferrite without and with magnetic field on Fe-0.76%C alloy. It is found that the area fraction and numbers of proeutectoid ferrite grain as well as the lamellar spacing of pearlite in Fe-0.76%C alloy increased considerably with the increase of magnetic field intensity. The reason is that, the magnetic field increases the driving force of proeutectoid ferrite nuclei and shifts the eutectoid point to the side of high carbon content and high temperature, which increases the starting-temperature of the transformation from austenite to ferrite. The proeutectoid ferrite grains are elongated along the magnetic field direction, which can be explained as follows: the proeutectoid ferrite becomes the magnetic dipolar under high magnetic field, and then the polarized austenite atoms are much easier to diffuse into ferrite grains along the magnetic field direction.
机译:本研究是在Fe-0.76%C合金中探讨从奥氏体到铁氧体的转化过程中的微观结构特征。 结果发现,随着磁场强度的增加,Fe-0.76%C合金中珠光体中珠光体的面部分数和珠光石的层间距显着增加。 原因在于,磁场增加了前嵌体铁氧体核的驱动力,使共析点转移到高碳含量和高温侧,这增加了从奥氏体到铁氧体的转化的起始温度。 沿磁场方向伸长的前嵌体铁氧体晶粒,其可以如下所述:PREUPECTOID铁氧体在高磁场下成为磁性偶极物,然后偏振奥氏体原子更容易沿磁场方向扩散到铁氧体颗粒中 。

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