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Evolution of Goss Orientation during Thermal Heating with Different Heating Rate for Primary Recrystallization in Grain-oriented Electrical Steel

机译:取向电工钢初次再结晶过程中不同升温速率热加热过程中戈斯取向的演变

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In order to understand how exact Goss-oriented grains form in electrical steel, we studied Goss orientation and microstructure during primary recrystallization using electron back-scattered diffraction. In particular, we examined the effect of heating rate (20°C/s and 150°C/s) on the primary recrystallization behavior. In a cold rolled sheet, the Goss fraction in the outer layer is more than twice that in the inside layer, particularly because the fraction of Goss±5° grains is much greater at the surface compared with the inner part. When primary recrystallization is completed, the fraction of grains that have Goss±5° and ±10° orientations in the outer and inner layer appear to be similar regardless of the heating rate, and the fraction of Goss±15° grains appears to be higher when the sheet is subjected to a rapid heating rate than when it is subjected to a typical heating rate. In addition, the number of Goss±5° grains corresponding to a rapid heating rate is twice that corresponding to a typical heating rate, with smaller grain sizes and a more uniform distribution.
机译:为了了解电工钢中精确的戈斯取向晶粒如何形成,我们使用电子背散射衍射研究了初次再结晶过程中的戈斯取向和显微组织。特别是,我们研究了升温速率(20°C / s和150°C / s)对一次重结晶行为的影响。在冷轧薄板中,外层的高斯分数是内层的高斯分数的两倍以上,特别是因为与内部相比,高斯±5°晶粒的分数在表面处要大得多。当初次再结晶完成时,无论加热速率如何,外层和内层中具有Goss±5°和±10°取向的晶粒比例似乎都相似,而Goss±15°晶粒的比例似乎较高。当片材经受快速加热速率时,与片材经受典型加热速率时相比。另外,对应于快速加热速率的高斯±5°晶粒的数量是对应于典型加热速率的两倍,晶粒尺寸更小且分布更均匀。

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