Metallurgical V-N microalloying and compound deoxidation cored wire
A technology of micro-alloying and composite deoxidation, applied in the field of iron and steel metallurgy, can solve the problems of vanadium-nitrogen alloy burning, low density of vanadium-nitrogen alloy, and high oxygen content, reduce the amount of nitrogen-enhancing agent added, reduce the cost of steelmaking, The effect of saving vanadium resources
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Embodiment 1
[0027] Example 1: Crumble 50% ferrovanadium, ferrosilicon nitride, and calcium-silicon alloy into particle sizes less than 6mm, and mix them uniformly according to the proportion of ferrovanadium accounting for 60%, ferrosilicon nitride accounting for 20%, and silicon-calcium alloy accounting for 20%. Made into cored wire. The 20SiMn steel is smelted in the converter. During the tapping process of the converter, the molten steel is pre-deoxidized and alloyed, and then the ladle is sent to the ladle refining furnace or the argon blowing station, and the above-mentioned cored wire is fed at a speed of 3 m / s by a wire feeding machine. Feed it into the ladle at a high speed, and the amount added is calculated according to the powder weight in the cored wire of 1.2 kg / ton of molten steel. While feeding the wire, blow argon gas into the molten steel for stirring. After feeding the wire, continue stirring for 1 minute, and then take a sample out steel. The measured vanadium conten...
Embodiment 2
[0028] Example 2:Crumble vanadium nitrogen alloy, silicon manganese nitride and metal aluminum powder into particle size less than 6mm, according to the ratio of vanadium nitrogen alloy accounted for 75%, silicon manganese nitride accounted for 15%, aluminum powder accounted for 10% and mixed evenly, and then Made into cored wire. The 20SiMn steel is smelted in the converter. During the tapping process of the converter, the molten steel is pre-deoxidized and alloyed, and then the ladle is sent to the ladle refining furnace or the argon blowing station, and the above-mentioned cored wire is fed at a speed of 3 m / s by a wire feeding machine. Feed it into the ladle at a high speed, and the amount added is calculated according to the powder weight in the cored wire of 0.65 kg / ton of molten steel. While feeding the wire, blow argon gas into the molten steel for stirring. After the wire feeding, continue stirring for 1 minute, and then take a sample out steel. The measured vanadi...
Embodiment 3
[0029] Example 3: Crush 50% of ferrovanadium, ferrosilicon nitride, silicon-calcium alloy and metal aluminum powder into a particle size of less than 2mm, according to which iron vanadium accounts for 63%, ferrosilicon nitride accounts for 22%, metal aluminum powder accounts for 10%, and silicon-calcium alloy accounts for 5% % of the ingredients and mix them evenly, and then make them into cored wire. The 20SiMn steel is smelted in the converter. During the tapping process of the converter, the molten steel is pre-deoxidized and alloyed, and then the ladle is sent to the ladle refining furnace or the argon blowing station, and the above-mentioned cored wire is fed at a speed of 3 m / s by a wire feeding machine. Feed into the ladle at a high speed, and the amount added is calculated according to the powder weight in the cored wire of 1.1 kg / ton of molten steel. While feeding the wire, blow argon gas into the molten steel for stirring. After the wire feeding, continue stirring f...
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