用错向映射法识别铝合金成核位置的方法学

S. Papadopoulou, E. Gavalas, S. Papaefthymiou
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引用次数: 2

摘要

热轧和冷轧半成品薄板的制造过程包括微观组织和织构的复杂演变,以满足要求的机械性能和适当的成形性特征。通过控制恢复和再结晶过程,可以获得理想的力学性能和最佳晶粒尺寸。这项工作考察了恢复和再结晶对产生的晶体织构和局部塑性变形的影响。提出了一种电子背散射衍射-核平均取向偏差(EBSD-KAM)评价的处理方法,目的是有效地评价颗粒间所有可能的取向偏差角,并从不同的角度观察恢复现象。结果表明,虽然织构成分在恢复过程中没有明显的变化,但亚晶界的比例有所增加,表明在选定温度下恢复完成的最大值为90%。再结晶的发生可以从另一个角度来解释,从新形成的晶粒和具有高取向角的点来解释再结晶过程的演变和织构的演变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Methodology for the identification of nucleation sites in aluminum alloy by use of misorientation mapping
: The fabrication of semi-finished hot and cold rolled sheets includes a complex evolution of both microstructure and texture to meet the demanded mechanical properties and suitable formability characteristics. The desired mechanical properties along with the optimum grain size can be obtained through the control of both recovery and recrystallization processes. This work examines the effect of recovery and recrystallization on the resulting crystallographic texture and on the local plastic deformation. A processing approach for EBSD-KAM (Electron Back Scatter Diffraction— Kernel average misorientation) evaluation is suggested with the purpose of effectively evaluating all the possible misorientation angles in-between the grains and of observing the recovery phenom-enon from a different point of view. The results showed that although texture components did not alternate significantly during recovery, the fraction of sub-grain boundaries was increased indicating the completion of recovery at the selected temperature exhibited a maximum value of 90%. The initiation of recrystallization was illustrated by a different aspect, underlying newly formed grains and points which exhibited high misorientation angle, for the evolution of the recrystallization process and texture evolution.
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