Effect of niobium on the recovery and recrystallization behavior of low-carbon micro-alloyed steel
-
摘要: 采用應力松弛實驗研究了低C含Nb微合金鋼奧氏體熱變形過程中的析出及再結晶動力學過程,通過實驗及理論模型分析了析出/溶質拖曳對回復和再結晶行為的影響.結果顯示:隨Nb含量的增加,析出動力學曲線的鼻尖溫度上升,但鼻尖溫度對應的時間變化不大,約為20~30s;析出可明顯抑制再結晶的發生,增加Nb含量將使非再結晶溫度升高;Nb溶質通過拖曳作用阻礙晶界運動,減小了晶界遷移率,最終減慢再結晶過程的發生;對于低C含Nb實驗鋼,擬合得到再結晶激活能與Nb質量分數的0.5次方成正比.Abstract: The kinetic processes of recrystallization and precipitation in low carbon steels with different Nb contents were studied by stress-relaxation method. The effects of Nb solute drag and its precipitation on the recovery and recrystallization behavior were analyzed by the experiment and theoretical model. When the Nb content increases, the nose temperature of precipitation kinetic curves (PTT) rises, but the time of precipitation corresponding to the nose temperature changes a little, which is about 20 to 30 s. The precipitation can obviously restrain the recrystallization process, and increasing the Nb content makes the non-recrystallized temperature rise. The Nb solute drag can inhibit the mobility of grain boundaries, lead to the decreasing mobility rate of grain boundaries, and finally cause the process of recrystallization retarded. The recrystallized activation energy is linear with the square root of Nb mass fraction.
-
Key words:
- low carbon steel /
- microalloying /
- niobium /
- precipitation /
- recrystallization /
- recovery /
- activation energy /
- stress relaxation
-

計量
- 文章訪問數: 233
- HTML全文瀏覽量: 88
- PDF下載量: 7
- 被引次數: 0