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Effects of High Magnetic Field Annealing on the Nucleation Sites for Recrystallized Nuclei with {111} <112> Orientation in Cold-rolled IF Steel Sheet

机译:高磁场退火对冷轧中的{111} <112>在冷轧中的{111} <112>取向的核核核

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The effect of high magnetic field annealing on the nucleation sites for recrystallized nuclei with {111}<112> orientation in the initial stage of recrystallization in as-annealed interstitial-free (IF) steel sheet were investigated by the SEM-EBSD analysis. Specimens of cold rolled IF steel sheet were annealed at 650°C for 0 min and 10 min respectively with a 12-tesla magnetic field to obtain a partially recrystallized microstructure. During the magnetic field annealing, they were respectively placed at the center of the applied field with their rolling planes parallel to the magnetic field direction (MD), and with their rolling direction (RD) parallel and normal to the MD, respectively. It was found that different to the non-field annealed specimen, in the field annealed specimens, the {111}<112> oriented recrystallized nulei favored to nucleate in the {111}<112> deformed matrix and not in the {111}<110> deformed matrix. This phenomenon may be attributed to the magnetic ordered state induced by the magnetic field, which might suppress the formation of high-energy grain boundaries between the newly formed nuclei and the deformed matrix.
机译:通过SEM-EBSD分析研究了在重结晶中重结晶的初始阶段的再结晶核与{111} <112>取向的高磁场退火的影响。如果钢板在650℃下退火0分钟和10分钟,则冷轧试样分别用12-Tesla磁场退火,以获得部分再结晶的微观结构。在磁场退火期间,它们分别与其平行于磁场方向(MD)的轧机的施加场的中心,并且它们的滚动方向(RD)分别与MD平行和正常。发现与非野外退火标本不同,在现场退火标本中,{111} <112>取向的重结晶Nulei在{111} <112>变形的基质中核心,而不是在{111} < 110>变形矩阵。该现象可以归因于由磁场引起的磁性有序状态,这可能抑制新形成的核和变形基质之间的高能晶界的形成。

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