氮气
合金
冶金
吸收(声学)
材料科学
氮气
分析化学(期刊)
化学
环境化学
复合材料
有机化学
作者
Wenliang Dong,Yuan Fang,Baisong Liu,Anjun Xu
标识
DOI:10.1177/03019233251313958
摘要
The industrial trials of N 2 injection and nitrogen-containing alloy addition for increasing the nitrogen content in molten steel were carried out on a 300 t ladle Ruhrstahl–Heraeus (RH) treatment. The effects of the order of N 2 injection and alloy addition, as well as vacuum chamber pressure on the nitrogen dissolution rate of the molten steel were investigated. A nitrogen dissolution model for N 2 injection of RH was established and the predicted result was in good agreement with the measured. The equilibrium [N] contents corresponding to pressure of 7.5–8.5 kPa, 3.0–4.0 kPa and <0.1 kPa were 160–170 ppm, 110–130 ppm and 90–100 ppm, respectively. The [N] content increase rate was slow with only N 2 injection, and the [N] content was not further increased after reaching the equilibrium. The [N] content increase rate was fast with nitrogen-containing alloy addition, while the [N] content rapidly rised to a supersaturation state if the amount of nitrogen brought in by the alloy exceeded the nitrogen equilibrium. Thereafter, the [N] content decreased to near the equilibrium value. The nitrogen-containing alloy addition led to a deterioration of the cleanliness of molten steel, and the earlier addition of alloys had more time to remove the inclusions and to reduce the T.O content.
科研通智能强力驱动
Strongly Powered by AbleSci AI