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Composite molten steel refining additive

A compound refining and additive technology, applied in the field of molten steel compound refining additives, can solve the problems of unrealized multi-component compound deoxidation, slow slag melting in LF refining furnace, affecting the improvement of continuous casting ratio, etc., and achieves shortening of reduction refining time and comprehensive economic benefits Remarkably, the effect of improving the quality of steel

Inactive Publication Date: 2002-05-15
重庆工业高等专科学校
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] 1. The use of a relatively single Al deoxidizer has not achieved true multi-component composite deoxidation
[0004] 2. Deoxidation inclusions are difficult to fully remove
[0005] 3. The lime (or synthetic slag) added during the tapping process cannot be quickly dissolved into slag (the melting point of lime is as high as 2130 degrees)
[0006] 4. The LF refining furnace is slow to melt slag, and the refining effects such as desulfurization, deoxidation, adsorption and inclusions are not ideal
[0007] 5. The whole foam slag submerged arc refining cannot be realized on LF
[0008] 6. It takes longer time for LF refining and heating, which affects the smooth progress of UHP(LD)-LF-CC process, affects the increase of continuous casting ratio, and affects steel output

Method used

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Embodiment Construction

[0036] Embodiment of the present invention sees table 1:

[0037] Table 1:

[0038] The content of aluminum in the aluminum ash should be 15% (or more than 15%) of the weight of the aluminum ash in the above-mentioned each embodiment.

[0039] Optimum chemical composition distribution ratio is shown in Table 2 in the composite refining additive of the present invention:

[0040] name

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PUM

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Abstract

This invention provides a molten steel composite refining additive. The said additive by wt.% includes aluminium ash 10-50% (aluminium content at least being 15% of ash wt.), metallurgical furnace slag 10-60%, carbide 5-65%, limestone 1-10% and witherite 1-10%. This additive is used for the oxidable slag tapping process of steel smelting furnace such as electric furnace, converter, etc. and for refining furnace to make the oxidable molten steel proceed polybasic composite oxygen removal, sulphur removal and quick deoxidated impurity inclusion removal, and at the same time, it enhances quick dissolution of added slagging material and quick slag forming.

Description

Technical field: [0001] The invention relates to a composite refining additive for molten steel used in the iron and steel industry. Background technique: [0002] The main process of modern steelmaking is converter-refining furnace-continuous casting-(LD-LF-CC) and ultra-high power electric furnace-refining furnace-continuous casting (UHP-LF-C, C). The application of enhanced smelting technologies such as super power supply, molten iron hot charging, scrap steel heating, oxygen burner fluxing, etc., further shortens the oxidation and refining time of molten steel, and the popularization and application of high-efficiency continuous casting makes the billet forming speed of molten steel faster than traditional processes. increase in magnitude. So shortening the time of LF refining outside the furnace becomes the key to increasing the output of the steelmaking process, increasing the continuous casting ratio, and ensuring the smooth flow of the "three ones" process. On the ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C21C7/04
Inventor 任正德雷亚杨治明庞福如
Owner 重庆工业高等专科学校
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