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High toughness low carbon bainite thick steel plate and its production method

A low-carbon bainite and production method technology, applied in other manufacturing equipment/tools, manufacturing tools, etc., can solve the problems that are unfavorable to large-scale industrial continuous casting production, affect steel low-temperature toughness, and reduce impact toughness, etc., to achieve excellent cold Bending performance, improvement of low temperature toughness, and effect of strength improvement

Inactive Publication Date: 2006-06-14
UNIV OF SCI & TECH BEIJING +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

This technology is only suitable for yield strength 800N / mm 2 However, the content of Nb and Ti elements is relatively high, and the weight percentages are 0.091 and 0.08 respectively, which brings great technical difficulties to continuous casting production, which is not conducive to large-scale industrial continuous casting production, and the excess of Nb and Ti after combining with N Ti also causes a decrease in impact toughness
This technology uses a higher billet heating temperature, which will affect the low temperature toughness of the steel

Method used

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Embodiment Construction

[0024] According to the chemical composition designed in the present invention, smelting and continuous casting have been carried out, and the tensile strength is 600N / mm 2 level and 700N / mm 2 The actual chemical composition of grade low carbon bainite thick steel plate is shown in Table 1. The thickness of the continuous casting slab used in the embodiment of the present invention is 230mm. The slab was heated in the thick plate factory at a heating temperature of 1180°C. Two-stage controlled rolling was carried out in the 4300 thick plate rolling mill. The thickness of the intermediate slab ensured no recrystallization The cumulative deformation in the area is 60% to 70%. According to the thickness of the finished plate, the rolling temperature of the second stage is 930-830°C. See Table 2 for the test results of physical properties of steel plates with different thicknesses manufactured according to the production process of the present invention.

[0025] It can be seen...

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Abstract

The invention offers a high tensile strength low carbon bainite coarse plate and its manufacturing method. Its compositions (Wt%) are C 0.04%-0.08%, Si 0.1%-0.5%, Mn 1.4%-1.85%, Nb 0.015%-0.060%, Ti 0.005%-0.03%, B 0.0005%-0.0030%, Cu 0.10%-0.60%, Ni 0.05%-0.6%, Al 0.015%-0.05%, rest Fe and other inevitable impurity. The invention adopts low cost Mn element as the main additional element, fully applies the changing action of Cu, Ni, Nb, B to the bainite. The steel has low carbon content, good low temperature toughness. The turning temperature is under ¿C80 centigrade degree. Welding performance is good and simple. Forming is good. TMCP+RPC technique is adopted to improve steel tensile strength, reduced cost. The product can widely apply in engineering machinery, digging machinery, heavy-duty car, and marine facilities field, and etc.

Description

technical field [0001] The invention belongs to the field of metal materials, and in particular relates to a high-strength toughness low-carbon bainite thick steel plate and a production method thereof. Background technique [0002] The low-carbon bainite steel developed in the early stage has low Mn content, high content of Cr and Ni elements, high cost of steel, and unsatisfactory effect on promoting the bainite transformation of the entire structure, so the strength level of the steel is not high, and the production tougher. [0003] Wuhan Iron and Steel Group Corporation has an application number of 97109312.1, a Chinese patent named "Copper-boron low-carbon and ultra-low-carbon bainite high-strength steel", whose tensile strength can reach 590N / mm 2 Above grade, it contains about 0.5% Cu, but does not contain Ni. If the heating temperature is not appropriate, cracks and other defects are easy to appear on the surface of the steel plate, and the thickness of the steel p...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/16B23P23/04C22C33/04
Inventor 侯华兴贺信莱于功利赵素华郝森尚成嘉张万山鲁强马玉璞张涛杨军王学敏
Owner UNIV OF SCI & TECH BEIJING
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