Steel for railway freight car combined brake beam containing nb and ti and its manufacturing method
A technology for railway wagons and manufacturing methods, applied in the field of iron and steel metallurgy, capable of solving problems such as inconsistent performance
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Embodiment 1
[0047] Embodiment 1 Manufacture of Steel for Railway Freight Car Combined Brake Beam of the Present Invention
[0048] A steel plant adopts the technology of the present invention in the converter process with a nominal capacity of 120 tons (actual steel output ranges from 120 to 140 tons) to produce section steel for combined brake beams of railway wagons. The production process is converter smelting → LF furnace electric heating → RH vacuum treatment→6-machine 6-strand billet continuous casting machine casting into 150mm×150mm steel billet→steel billet heating→rolling into section steel for combined brake beam of railway wagon. Specific process:
[0049] Firstly, 137 tons of molten iron is added into the converter, and the S content of the added molten iron is less than 0.060%. After the molten iron is added to the converter, the molten iron is initially smelted into molten steel by using the function of the converter to remove C by blowing oxygen. When the composition of t...
Embodiment 2
[0055] Embodiment 2 Manufacture of Steel for Railway Freight Car Combined Brake Beam of the Present Invention
[0056] A steel plant adopts the technology of the present invention in the converter process with a nominal capacity of 120 tons (the actual steel output is in the range of 120 to 140 tons) to produce section steel for combined brake beams of railway wagons. The production process is: converter smelting → LF furnace electric heating →RH vacuum treatment→6-machine 6-strand billet continuous casting machine casting into 200mm×200mm steel billet→steel billet heating→rolling into section steel for combined brake beam of railway wagon. Specific process:
[0057] First, add 140 tons of molten iron into the converter, the S content of the added molten iron is not more than 0.060%, and the V content is not more than 0.005%. After the molten iron is added to the converter, the molten iron is initially smelted into molten steel by using the function of the converter to remove...
Embodiment 3
[0063] Embodiment 3 Manufacture of Steel for Railway Freight Car Combined Brake Beam of the Present Invention
[0064] A steel plant adopts the technology of the present invention in the converter process with a nominal capacity of 120 tons (the actual steel output is in the range of 120 to 140 tons) to produce section steel for combined brake beams of railway wagons. The production process is: converter smelting → LF furnace electric heating →RH vacuum treatment→6-machine 6-strand billet continuous casting machine casting into 160mm×160mm steel billet→steel billet heating→rolling into section steel for combined brake beam of railway wagon. Specific process:
[0065] First, add 137 tons of molten iron into the converter, the S content of the added molten iron is not more than 0.060%, and the V content is not more than 0.005%. After the molten iron is added to the converter, the molten iron is initially smelted into molten steel by using the function of the converter to remove...
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Abstract
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