Effects of a High Magnetic Field on Microstructure and Texture Evolution in a Cold‐rolled Interstitial‐Free (IF) Steel Sheet during Annealing

Effects of a High Magnetic Field on Microstructure and Texture Evolution in a Cold‐rolled Interstitial‐Free (IF) Steel Sheet during Annealing
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DOI:
10.1002/adem.200300387
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发表时间:
2003-08
影响因子:
3.6
通讯作者:
C. He;Yudong Zhang;Xiang Zhao;L. Zuo;Jicheng He;Kazuo Watanabe;Tao Zhang;G. Nishijima;C. Esling
C. He;Yudong Zhang;Xiang Zhao;L. Zuo;Jicheng He;Kazuo Watanabe;Tao Zhang;G. Nishijima;C. Esling
中科院分区:
材料科学3区
文献类型:
--
作者:
C. He;Yudong Zhang;Xiang Zhao;L. Zuo;Jicheng He;Kazuo Watanabe;Tao Zhang;G. Nishijima;C. Esling

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具有{hkl}取向的晶核<110>在冷轧钢在强磁场下的退火中是有利的。这可能解释了在650 °C的过程中α纤维的增强(参见图10 T(顶部)和无磁场(底部)下获得的微结构并置。在高于650 °C的再结晶过程中的织构演变似乎也受到影响,但不是通过再结晶机制的变化,而是通过额外的取向依赖性成核和晶粒生长过程。
Crystal nuclei with the {hkl}<110> orientations are energetically favored in annealing of cold‐rolled steel under a strong magnetic field. This might explain the enhancement of the α‐fiber in during this process at 650 °C (see Figure for a juxtaposition of microstructures obtained at 10T (top) and without a magnetic field (bottom). Texture evolution during recrystallization above 650 °C also appears to be influenced, yet not by a change in the recrystallization mechanism but rather by an additional orientation‐dependent nucleation and grain growth process.