首页> 外文会议>International Conference on Textures of Materials(ICOTOM 14) pt.2; 20050711-15; Leuven(BE) >The effects of a high magnetic field on microstructure, grain boundary structures and texture in a medium carbon steel under different cooling rates
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The effects of a high magnetic field on microstructure, grain boundary structures and texture in a medium carbon steel under different cooling rates

机译:不同冷却速率下强磁场对中碳钢组织,晶界结构和织构的影响

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摘要

A 12-Tesla magnetic field was applied during the transformation from austenite to ferrite and then pearlite in a medium plain carbon steel at two different cooling rates. Results show that when cooling is slow, the magnetic field shows an effect of promoting proeutectoid ferrite grains to grow along the field direction that results in an elongated grain microstructure. However, when cooling is fast, the magnetic field mainly shows an effect of reducing the amount of low angle misorientations and increasing the amount of CSL boundaries. In addition, the magnetic field exhibits a slight enhancement of the < 001 > texture component in the direction that is perpendicular to the field direction (TFD).
机译:在奥氏体到铁素体然后珠光体的转变过程中,在中碳素碳钢中以两种不同的冷却速率施加12-Tesla磁场。结果表明,当冷却缓慢时,磁场显示出促进共析铁素体铁素体晶粒沿磁场方向生长的作用,从而导致晶粒组织延长。但是,在冷却快的情况下,磁场主要表现出减少低角度取向不良的量和增加CSL边界的量的效果。此外,磁场在垂直于磁场方向(TFD)的方向上显示<001>纹理分量的轻微增强。

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