高速纳米压痕成像对铁素体-珠光体带状冷轧高强钢恢复和早期再结晶的新认识

S. Janakiram, P. S. Phani, G. Ummethala, S. Malladi, J. Gautam, L. Kestens
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引用次数: 11

摘要

本文在微米长度尺度上揭示了由铁素体和珠光体组成的冷轧高强度钢在恢复和早期再结晶过程中的组织-性能相关性。采用高分辨率纳米压痕图测量了铁素体、珠光体及其过渡区的硬度,其硬度与扫描电镜和透射电镜观察到的局部显微组织吻合良好。使用聚类算法确定组成微观结构特征的性质。相变相硬度随退火温度的变化与透射电镜观察到的位错活度吻合较好,并提出了一种简单的协调机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New Insights on Recovery and Early Recrystallization of Ferrite-Pearlite Banded Cold Rolled High Strength Steels by High Speed Nanoindentation Mapping
Abstract This work unravels structure-property correlations at the micrometer length scale during recovery and early recrystallization of a cold rolled high strength steel comprised of ferrite and pearlite. High resolution nano-indention mapping is used to measure the hardness of ferrite, pearlite and the transition zone between them, which correlates well with the local microstructure obtained from scanning and transmission electron microscopy. A clustering algorithm is used to determine the properties of the constituent microstructural features. The variation in the hardness of the phases with annealing temperature agrees well with the dislocation activity observed using Transmission Electron Microscopy (TEM) and a simple mechanism to reconcile the observations is presented.
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