Effect of Annealing Temperature on Recrystallization Behavior of Cold Rolled Ti-Microalloyed Steel

HUO Xiang-dong,MAO Xin-ping,L Sheng-xia

钢铁研究学报(英文版) ›› 2013, Vol. 20 ›› Issue (9) : 105-110.

PDF(3662 KB)
欢迎访问《钢铁研究学报(英文版)》官方网站!今天是 2025年8月2日 星期六
PDF(3662 KB)
钢铁研究学报(英文版) ›› 2013, Vol. 20 ›› Issue (9) : 105-110.
材料

Effect of Annealing Temperature on Recrystallization Behavior of Cold Rolled Ti-Microalloyed Steel

  • HUO Xiang-dong1,MAO Xin-ping2,L Sheng-xia1
作者信息 +

Effect of Annealing Temperature on Recrystallization Behavior of Cold Rolled Ti-Microalloyed Steel

  • HUO Xiang-dong1,MAO Xin-ping2,L Sheng-xia1
Author information +
文章历史 +

摘要

In order to develop cold rolled Ti-microalloyed steel strips, the effects of annealing temperature on recrystallization behavior of experimental steel were researched by optical microscopy (OM), transmission electron microscopy (TEM) and Vickers hardness test. The annealing treatment could be divided into three distinct stages: recovery, recrystallization and grain growth. Recrystallization took place from 933 to 1033 K, during which a large number of recrystallized grains appear and hardness drops sharply. The morphology and size of TiN particles nearly remained unchanged at different stages of processing. With increasing annealing temperature, nanometer precipitates coarsened and the dislocation density was significantly reduced. In comparison with annealing time, annealing temperature was more crucial for recrystallization of cold rolled Ti-microalloyed steel. It could be concluded that the pinning force of nanometer particles on dislocations increased the recrystallization temperature. At higher annealing temperature, recrystallization took place because of precipitates coarsening caused by Ostwald ripening.

Abstract

In order to develop cold rolled Ti-microalloyed steel strips, the effects of annealing temperature on recrystallization behavior of experimental steel were researched by optical microscopy (OM), transmission electron microscopy (TEM) and Vickers hardness test. The annealing treatment could be divided into three distinct stages: recovery, recrystallization and grain growth. Recrystallization took place from 933 to 1033 K, during which a large number of recrystallized grains appear and hardness drops sharply. The morphology and size of TiN particles nearly remained unchanged at different stages of processing. With increasing annealing temperature, nanometer precipitates coarsened and the dislocation density was significantly reduced. In comparison with annealing time, annealing temperature was more crucial for recrystallization of cold rolled Ti-microalloyed steel. It could be concluded that the pinning force of nanometer particles on dislocations increased the recrystallization temperature. At higher annealing temperature, recrystallization took place because of precipitates coarsening caused by Ostwald ripening.

关键词

退火温度 / 再结晶 / 碳化钛 / 位错

Key words

annealing temperature / recrystallization / titanium carbides / dislocations

图表

引用本文

导出引用
霍向东, 毛新平, 吕盛夏. Effect of Annealing Temperature on Recrystallization Behavior of Cold Rolled Ti-Microalloyed Steel[J]. 钢铁研究学报(英文版), 2013, 20(9): 105-110
SUO Xiang-Dong, MAO Xin-Beng, LV Sheng-Jia. Effect of Annealing Temperature on Recrystallization Behavior of Cold Rolled Ti-Microalloyed Steel[J]. Journal of Iron and Steel Research International, 2013, 20(9): 105-110
中图分类号: TG 142.1    TF 777.7   

PDF(3662 KB)

Accesses

Citation

Detail

段落导航
相关文章

/