Method for nitrogen increase of nitrogen-containing steel for wind power flange through RH vacuum degassing system
A wind power flange and vacuum degassing technology, applied in the field of metallurgy, can solve the problems of inaccurate control of nitrogen content, low efficiency of nitrogen increase, poor dehydrogenation effect, etc., to improve the purity of molten steel, improve the efficiency of nitrogen increase, save The effect of secondary pollution risk of molten steel
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Embodiment 1
[0025] This embodiment provides a method for increasing nitrogen by using the RH vacuum degassing system when producing S355NL (Q355NE) steel for wind power flanges. The steps are as follows:
[0026] When the ladle leaves the LF position, the nitrogen content is 59ppm, and the target nitrogen content is 90ppm.
[0027] Step 1. When the ladle reaches the RH vacuum position, use argon with a ring flow of 2000NL / min as the lifting gas, turn on the vacuum pump, evacuate to 67MPa and keep it for 10 minutes, then use a low-pressure nitrogen pipeline to switch the argon to nitrogen, at 0.8kg of nitrogen The pressure and nitrogen ring flow rate of 2000NL / min are maintained for 5 minutes to break empty, and the total vacuum time is 15 minutes. After breaking the air, take a sample and determine the hydrogen. The measured hydrogen content is 0.85ppm. In the process of blanking sample inspection, use argon gas for soft blowing at a flow rate of 120NL / min;
[0028] When nitrogen is used as th...
Embodiment 2
[0032] This embodiment provides a method for increasing nitrogen by using the RH vacuum degassing system when producing S355NL (Q355NE) steel for wind power flanges. The steps are as follows:
[0033] The nitrogen content when the ladle leaves the LF position is 54 ppm, and the target nitrogen content is 90 ppm.
[0034] Step 1. The ladle reaches the vacuum position of RH, use 1800NL / min ring flow argon as the lifting gas, turn on the vacuum pump, evacuate to 67MPa and keep it for 12min, then use the low pressure nitrogen pipeline to switch the argon to nitrogen, at 0.6kg of nitrogen The pressure and the nitrogen ring flow rate of 1800NL / min are maintained for 5 minutes to break, and the total vacuum time is 17 minutes. After breaking the air, take a sample and determine the hydrogen. The measured hydrogen content is 0.78ppm. In the process of blank sample inspection, argon gas is used for soft blowing at a flow rate of 80NL / min;
[0035] Step 2. The nitrogen content of the air-bre...
Embodiment 3
[0038] This embodiment provides a method for increasing nitrogen by using the RH vacuum degassing system when producing S355NL (Q355NE) steel for wind power flanges. The steps are as follows:
[0039] When the ladle leaves the LF position, the nitrogen content is 60 ppm, and the target nitrogen content is 90 ppm.
[0040] Step 1. When the ladle reaches the RH vacuum position, use argon with a ring flow of 1900NL / min as the lifting gas, turn on the vacuum pump, evacuate to 67MPa and keep it for 10 minutes, and use a low-pressure nitrogen pipeline to switch the argon to nitrogen. The pressure and the nitrogen ring flow rate of 1900NL / min are maintained for 5 minutes to break, and the total vacuum time is 15 minutes. After breaking the air, take a sample and determine the hydrogen. The measured hydrogen content is 0.80ppm. In the process of blank sample inspection, argon gas is used for soft blowing at a flow rate of 100NL / min;
[0041] Step 2. The nitrogen content of the air-break sa...
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