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Preparation method for steel plate

A steel plate and slab technology, applied in the field of metal plate preparation, can solve the problems of steel plate size rolling equipment capacity limitations, high rolling equipment capacity requirements, increased energy consumption and roll consumption, etc., to improve production efficiency and reduce production costs , The effect of reducing the input of heating heat

Inactive Publication Date: 2015-05-27
赵冰 +2
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0006] However, the thin strip continuous casting process still has some problems in the production of the traditional hot rolling process, such as: the microalloying elements cannot be maintained as a solid solution during the hot rolling process, and partial precipitation occurs, resulting in an increase in the strength of the steel, thereby increasing the rolling capacity. load, increase energy consumption and roll consumption, so that the thickness of hot-rolled products that can be produced economically and practically cannot be too thin, it should be ≥ 1.5mm; obtain ultra-fine microstructure to obtain ultra-high strength During the rolling process of fine-grained plates, the capacity of the rolling equipment is high and the damage is large; the size of the prepared steel plate is limited by the capacity of the subsequent rolling equipment, etc.

Method used

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Examples

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Effect test

preparation example Construction

[0023] The preparation method of the steel plate that the present invention proposes, comprises the following steps:

[0024] (1) Add raw materials into the smelting container, the raw materials are steel scraps;

[0025] (2) Turn on the smelting heat source, heat the steel scraps in the smelting container to the steel smelting temperature, and smelt. The smelting time is 3 to 5 minutes;

[0026] (3) Use air pressure or self-weight to make the molten steel in the smelting container drip through the small hole at the bottom of the smelting container, and spread the molten steel on the slab according to the geometric dimensions of the processed sheet, and the relative moving speed of the smelting container and the processed sheet For: 0.02 ~ 0.2 m / s;

[0027] (4) While the steel solution is covering the slab, the steel metal layer is subjected to thermomechanical processing while laying and covering, so that the grains of the covered steel metal layer are refined, and a prefabr...

Embodiment 1

[0040] (1) Add raw materials into the smelting vessel, the raw materials are plate and bar steel scraps;

[0041] (2) Turn on the smelting heat source, heat the steel scraps in the smelting vessel to the steel smelting temperature, and smelt for 3 minutes;

[0042](3) Using the argon pressurization method, apply a gas pressure of 0.2 MPa to the steel solution in the smelting vessel, so that the steel solution in the smelting vessel drips through the small hole at the bottom of the smelting vessel. The diameter of the small hole is 5 mm, and the plate of 1 square meter is processed. , so that the steel solution is spread on the slab, and the relative moving speed of the melting vessel and the processed plate is: 0.1 m / s;

[0043] (4) When the steel solution is spread on the slab, the steel metal layer is stirred while laying, so that the grains of the covered steel metal layer are refined, and a prefabricated steel slab with a fine-grained structure is obtained;

[0044] (5) M...

Embodiment 2

[0046] (1) Add raw materials into the smelting container, the raw materials are steel scraps;

[0047] (2) Turn on the smelting heat source, heat the steel scraps in the smelting container to the steel smelting temperature, and smelt, and the smelting time is 4 minutes;

[0048] (3) Using the self-weight method, the steel solution in the smelting container is dripped through the small hole at the bottom of the smelting container. The diameter of the small hole is 8 mm, and the plate of 1 square meter is processed, so that the steel solution is covered on the slab, and the smelting container and the processed plate The relative moving speed is: 0.2 m / s;

[0049] (4) While laying molten steel on the slab, the steel metal layer is forged while laying, so that the grains of the covered steel metal layer are refined, and a prefabricated steel slab with a fine-grained structure is obtained;

[0050] (5) Milling the prefabricated steel slab in the above step (4) to make the surface ...

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Abstract

The invention relates to a preparation method for a steel plate, which belongs to the technical field of metal plate preparation. The preparation method comprises the following steps of: firstly, adding raw material into a smelting container; heating steel leftover materials in the smelting container to the steel smelting temperature; in an air-pressure or self-weight mode, steel solution in the smelting container drips down from a small hole on the bottom of the smelting container to overlay and cover the steel solution on a plate blank; at the same time that the steel solution is overlaid and covered on the plate blank, a steel metal layer is subjected to thermal mechanical processing while being overlaid and covered; the crystal grain of the overlaid and covered steel metal layer tissue is refined to obtain a prefabricated steel plate blank of a fine grain tissue; and the prefabricated steel plate blank is subjected to machining to obtain the steel plate. The method disclosed by the invention has a low requirement on the raw materials, the raw materials can be abandoned materials, such as steel leftover materials, bar stocks, plate materials and the like, and therefore the production cost is greatly lowered. The technical process is greatly shortened, the production efficiency is greatly improved, and the fine grain steel plates of various ingredients, sizes and shapes can be prepared.

Description

technical field [0001] The invention relates to a method for preparing a steel plate, which belongs to the technical field of metal plate preparation. Background technique [0002] Up to now, the mass production of steel plates is mainly realized through the traditional hot rolling and cold rolling processes. [0003] The traditional hot rolling process is briefly as follows: continuous casting + slab reheating and heat preservation + rough rolling + finish rolling + cooling (or + coiling). Firstly, slabs are obtained through electric furnace or converter smelting and continuous casting; after reheating and heat preservation, the slabs are subjected to rough rolling and finish rolling to obtain steel plates of different thicknesses. Continuing to cold-roll traditional hot-rolled products can further reduce the thickness of the steel plate and obtain thinner cold-rolled steel plate products. [0004] Using the above-mentioned traditional hot-rolling or cold-rolling process ...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B22D11/06B22D11/12B21B1/46
Inventor 赵冰谭谆礼白秉哲郑燕康
Owner 赵冰
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