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Method for producing high-strength and high-corrosion-resistance steel through thin-strip continuous casting

A technology with high corrosion resistance and continuous casting, applied in the field of continuous casting technology, it can solve the problems of many units, macro-segregation, and the corrosion resistance of corrosion-resistant steel cannot meet the requirements of corrosion resistance.

Active Publication Date: 2021-03-19
BAOSHAN IRON & STEEL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

At the same time, the contact of high-temperature strip steel with cooling water will cause many problems: first, water spots (rust spots) will be formed on the surface of the strip steel, which will affect the surface quality; second, the cooling water used for laminar flow cooling or spray cooling It is easy to cause uneven local cooling on the surface of the strip, resulting in uneven microstructure inside the strip, resulting in uneven properties of the strip and affecting product quality; third, uneven local cooling on the surface of the strip will cause deterioration of the shape of the strip , affecting the shape quality
[0017] (1) Long process flow, high energy consumption, many units and equipment, and high infrastructure costs lead to high production costs
[0018] (2) Corrosion-resistant steel contains a relatively high content of copper and other segregation-prone elements that improve the corrosion resistance of the steel strip. The traditional process is prone to macro-segregation of copper and other elements due to the slow solidification and cooling of the slab, resulting in various segregation of the slab. Anisotropy and macro cracks appear, and the yield is low
As a result, the corrosion resistance of the steel strip is not high
[0020] (4) The corrosion resistance of these corrosion-resistant steels cannot achieve the corrosion resistance requirements of the steel of the present invention, and the present invention requires that the traditional corrosion-resistant steel be doubled
[0021] (5) In the traditional process, since the microalloying elements cannot be maintained as a solid solution during the hot rolling process, partial precipitation occurs, resulting in fine grains of the steel structure, increased yield ratio, and poor formability, which will significantly increase the rolling load. Increase energy consumption and roll consumption, and cause greater damage to equipment, thus limiting the economical and practical production of high-strength corrosion-resistant steel hot-rolled products. Thickness range, usually ≤ 2mm
This not only increases the investment cost, but also significantly increases the floor area of ​​the thin strip continuous casting and rolling production line, reducing the advantages of the production line

Method used

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  • Method for producing high-strength and high-corrosion-resistance steel through thin-strip continuous casting
  • Method for producing high-strength and high-corrosion-resistance steel through thin-strip continuous casting
  • Method for producing high-strength and high-corrosion-resistance steel through thin-strip continuous casting

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Embodiment Construction

[0089] The present invention will be further illustrated below with examples, but these examples are by no means any limitation to the present invention. Any changes made by those skilled in the art in the implementation of the present invention under the inspiration of this specification will fall within the protection scope of the claims of the present invention.

[0090] see figure 1 , the molten steel conforming to the design of the chemical composition of the present invention is poured directly through the ladle 1, through the ladle long nozzle 2, the tundish 3, the submerged nozzle 4 and the flow distributor 5 in a crystallization chamber that is made of two relatively rotating and capable of rapid cooling. In the molten pool 7 surrounded by the rollers 8a, 8b and the side sealing plate devices 6a, 6b, the molten steel solidifies on the circumferential surface where the crystallization rollers 8a, 8b rotate, and then forms a solidified shell and gradually grows at the p...

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Abstract

The invention discloses a method for producing high-strength and high-corrosion-resistance steel through thin-strip continuous casting. The method comprises the following steps of a), performing smelting, wherein smelting is performed according to the following chemical components including, by weight, 0.02-0.06% of C, 0.1-0.5% of Si, 0.4-1.7% of Mn, less than or equal to 0.02% of P, 4.0-6.0% of Cr, 1.0-3.0% of Ni, less than or equal to 0.007% of S, 0.004-0.010% of N, less than 0.001% of Als, 0.007-0.020% of total oxygen [O]T and the balance Fe and inevitable impurities, meanwhile, the chemical components include one or two of 0.01-0.08% of Nb and 0.01-0.08% of V, and the Mn / S ratio is greater than 250; b), performing double-roller thin-strip continuous casting to obtain a cast strip; c),performing lower airtight protection, wherein the cast strip directly enters a lower airtight chamber after being discharged out of crystallization rollers, and non-oxidizing gas is introduced into the lower airtight chamber; d), performing online hot rolling, wherein the cast strip is fed to a rolling mill through pinch rolls in the lower airtight chamber to be rolled into strip steel; e) coolingthe strip steel by adopting a gas atomization cooling mode; and f) coiling the strip steel.

Description

technical field [0001] The invention relates to a continuous casting process, in particular to a method for producing high-strength and high-corrosion-resistant steel by thin strip continuous casting. Background technique [0002] Most of the traditional thin strip steel is produced by multi-pass continuous rolling of the slab with a thickness of 70-200mm. The traditional hot rolling process is: continuous casting + slab reheating and heat preservation + rough rolling + finishing rolling + cooling + Coiling, that is, firstly obtain a cast slab with a thickness of about 200mm through continuous casting, reheat the cast slab and keep it warm, then perform rough rolling and finish rolling to obtain a steel strip with a thickness generally greater than 2mm, and finally process the steel strip Laminar cooling and coiling complete the whole hot rolling production process. If it is necessary to produce a steel strip with a thickness of less than 1.5mm (inclusive), it is relatively...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/02C22C38/04C22C38/46C22C38/48C22C38/58C22C33/04C21D8/02B22D11/06
CPCC22C38/02C22C38/04C22C38/58C22C38/001C22C38/48C22C38/46C21D8/0205C21D8/021C21D8/0226C21D8/0247B22D11/0622C22C33/04
Inventor 吴建春方园
Owner BAOSHAN IRON & STEEL CO LTD
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