Steelmaking method of ladle refining furnace

A technology of ladle refining furnace and refining agent, which is applied in the field of refining outside the molten steel furnace, can solve the problems of high consumption of foaming agent, large fluctuation of Al content, high labor intensity, etc., so as to reduce consumption and cost, reduce consumption of synthetic slag, and avoid The effect of carbonization of molten steel

Inactive Publication Date: 2010-11-17
重庆科健冶金材料有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As users' demand for high-grade steel, especially clean steel with low nitrogen, hydrogen, phosphorus, sulfur, oxygen and low inclusions, has greatly increased, such as X65 anti-H 2 S submarine pipeline steel, X52QS anti-strong acid ultra-low sulfur pipeline steel, CS-110SS anti-corrosion oil casing steel, WB36CN1 nuclear power pipe steel, etc. These high-quality products have a high mass fraction of nitrogen and hydrogen in steel Requirements, conventional ladle refining furnace refining technology is difficult to achieve
For this reason, "calcium carbide + aluminum powder + ferrosilicon powder + fluorite", "synthetic slag + slag washing reducing agent", "synthetic slag + molten calcium aluminate + slag washing reducing agent" and other refining slags have been implemented at home and abroad. Although the above-mentioned nitrogen, hydrogen and inclusion control technologies can achieve certain metallurgical effects, they all have shortcomings, especially difficult to achieve the best metallurgical effect of the ladle refining furnace
[0003] The traditional "calcium carbide + aluminum powder + ferrosilicon powder + fluorite" auxiliary slagging process has the disadvantages of too fast foaming agent, short foam retention time, poor stability, high consumption, serious environmental pollution, labor problems such as high strength
[0004] There are two disadvantages in using the slag-washing reducing agent as the refining agent: first, because the main functional components of the slag-washing reducing agent are restricted by resources and are unstable, such as Al content fluctuates greatly, Al 2 o 3 , SiO 2 The conten

Method used

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  • Steelmaking method of ladle refining furnace
  • Steelmaking method of ladle refining furnace
  • Steelmaking method of ladle refining furnace

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0035] An 80-ton ladle refining furnace in a factory adopts this technology to produce 4 furnaces of anti-H 2 S Submarine Line Pipe X65 Steel (for subsea oil transportation)

[0036] 1. Seamless steel pipe production process

[0037] 1300 t Mixed iron furnace → desulfurization, slag removal → 80 t Converter→LF Ladle Refining Furnace→(VD)→Continuous Casting Machine

[0038] 2.80 t Main parameters of ladle refining furnace equipment

[0039] Form 180 t Main parameters of ladle refining furnace equipment

[0040]

[0041] 3. Technical conditions of main raw and auxiliary materials

[0042] 3.1 Reducing agent for slag washing (used in the original process)

[0043] Table 2 Physicochemical properties of slag washing reducing agent

[0044]

[0045] 3.2 Ladle refining furnace multi-effect refining agent (for new technology)

[0046] Table 3 Physical and chemical indicators of multi-effect refining agent in ladle refining furnace

[0047]

[0048] Prepare the vari...

Embodiment 2

[0087] For the multi-effect refining agent of the present invention, the weight percentage of each component can also be shown in the following table, which can achieve the same technical effect and realize the purpose of the present invention.

[0088]

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Abstract

The invention discloses a steelmaking method of a ladle refining furnace. The method comprises the following steps of: (1) conveying primarily-refined molten steel of a converter into a ladle refining furnace, after a period of time for powering to heat and adding synthetic slag at a refining station, adding 0.25 to 0.5kg of multiple effect refining agents per ton of molten steel once only, wherein the multiple effect refining agent is prepared from the constituents having the following percentages by weight: 45-70% of CaC2, 5-20% of SiC, 5-15% of Al and 10-20% of sustained release agents; (2) performing slag modification according to the change of the slag and adding 0.05-0.20kg of slag per ton of molten steel each time; and (3) adding 4-15kg powdered slag of bauxite or CaSi per furnace 5-10 minutes before finishing refining in the ladle refining furnace. In the method, the elements of Ca, Al, Si and C in the constituents all have strong deoxidizing capacity, which meets the requirements of fast and deep deoxidization for slag and diffusive deoxidization to molten steel; the product of deoxidizing elements can form a white slag mineral phase with the synthetic slag, which is beneficial to desulfurization and inclusion removal of molten steel; and the content of N and H is reduced in the process of refining molten steel, thereby the consumption and the cost are reduced.

Description

technical field [0001] The present invention relates to a ladle refining furnace (ladle refining furnace) multi-effect refining agent (auxiliary slagging material) applied to refining slag reducing (or weakly oxidizing) atmosphere to produce molten steel refining foam white slag technology, is a kind of The invention discloses a steelmaking method for smelting high-quality steel grades at low cost, and belongs to the field of refining molten steel outside a furnace. Background technique [0002] Ladle refining furnace, namely LF furnace (LADLE FURNACE), is the main refining equipment outside the furnace in steel production. Its main tasks are: ①Desulfurization ②Temperature adjustment ③Precise composition fine-tuning ④Improve the purity of molten steel ⑤Slagging. As users' demand for high-grade steel, especially clean steel with low nitrogen, hydrogen, phosphorus, sulfur, oxygen and low inclusions, has greatly increased, such as X65 anti-H 2 S submarine pipeline steel, X52QS...

Claims

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Application Information

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IPC IPC(8): C21C7/00
Inventor 李恒瑞黄正全陈坤梁东李琨肖龙全
Owner 重庆科健冶金材料有限公司
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