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High-strength and high-reaming steel based on scrap steel and production method thereof

A technology of high hole expansion steel and production method, which is applied in the field of high hole expansion steel manufacturing, and can solve problems such as high alloy cost, high cost, and large temperature fluctuations

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

[0011] With the increasing requirements of automobile design on the chassis structure, the forming of parts is more complex, and the requirements for flanging and hole reaming performance of steel plates are further improved. The strength and rigidity of parts can be improved through the shape design of flanging and local reaming of automobile parts, which can To achieve the purpose of reducing the thickness and weight of automobile steel plates, traditional carbon-manganese solid-solution strengthened steel and low-alloy precipitation-strengthened steel structural steel plates are difficult to meet the forming requirements of automobile chassis and cantilever parts, such as traditional 440MPa steel plate carbon-manganese solid-solution strengthened steel and low-alloy The hole expansion rate of precipitation strengthened steel is only between 50% and 70%, thus the high hole expansion steel was born
In the 1990s, the United States and Japan successively developed hot-rolled steel sheets with high hole expansion performance of 440-780MPa, and the hole expansion rate was 70%-131%. They are mainly used in formability, especially those that require good flanging performance. For automobile chassis, wheels and other parts, the hole expansion performance of the steel plate is related to the composition, strength and structure uniformity of the steel plate. Because it contains more precious alloy elements Cr, Nb, Ti, V and Mo, etc. Ferrite / bainite dual phase structure can be obtained under the same conditions, but its cost is higher
[0023] Chinese patents CN105154769 and CN106119702 respectively disclose a kind of 780MPa and 980MPa grade hot-rolled high-strength high-reaming steel and its manufacturing method, both of which are in the category of high-strength steel. Multi-microalloying elements are used to strengthen the steel type, and the alloy cost is relatively high; at the same time, its production method adopts traditional continuous casting + traditional hot rolling process to produce
[0024] International patent WO200928515 uses C, Si, Mn to add a small amount of Nb, Ti alloy elements, and can produce reaming steel with a tensile strength above 490MPa. Hot rolling must adopt a two-stage laminar flow cooling method, which can be more accurately simulated in the laboratory. However, in hot rolling production, the strip speed changes greatly during hot rolling, and the temperature of the steel plate in the air cooling section cannot be measured. A two-stage cooling model is used to control laminar cooling, and the steel plate The actual temperature fluctuates greatly, which will easily lead to large fluctuations in the performance of the steel coil head, middle and tail

Method used

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  • High-strength and high-reaming steel based on scrap steel and production method thereof
  • High-strength and high-reaming steel based on scrap steel and production method thereof
  • High-strength and high-reaming steel based on scrap steel and production method thereof

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Embodiment Construction

[0109] The present invention is described further below with embodiment and accompanying drawing, but these embodiments are in no way restricting 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.

[0110] 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...

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Abstract

The invention discloses high-strength and high-reaming steel based on scrap steel and a production method thereof. The high-strength and high-reaming steel comprises the following chemical componentsof, in percentage by weight, 0.01%-0.05% of C, 0.2%-0.6% of Si, 0.8%-1.5% of Mn, less than or equal to 0.02% of P, less than or equal to 0.005% of S, less than or equal to 0.008% of N, less than 0.001% of Als, less than or equal to 0.0050% of Ca, 0.01%-0.08% of Nb, and 0.007%-0.02% of total oxygen, one or two elements of 0.1%-0.6% of Cu and 0.005%-0.04% of Sn is included, and the balance Fe and inevitable impurities. According to the steel, the residual Sn and Cu elements in the scrap steel are used for smelting, and microalloy elements such as Nb are selectively added; the alkalinity of slag,a type and a melting point of an inclusion in steel, a content of free oxygen in molten steel and a content of acid-soluble aluminum Als are controlled; and double-roll thin strip continuous castingis adopted for casting a cast strip, the cast strip directly enters a lower closed chamber with a non-oxidizing atmosphere and enters an online rolling mill for hot rolling under the closed condition,a gas atomization cooling mode is adopted for cooling after rolling, and finally coiling is carried out.

Description

technical field [0001] The invention relates to the manufacturing technology of high-hole reaming steel, in particular to a high-strength and high-hole reaming steel based on scrap steel and a production method thereof. Background technique [0002] In the traditional steel production process, tin (Sn) and copper (Cu) are typical residual or harmful elements in steel. It is very difficult and expensive to fully remove Sn and Cu in the steelmaking process. Once the steel contains Sn , Cu, basically cannot be completely eliminated, and the content of Sn and Cu can only be reduced by diluting molten steel, which all lead to an increase in the cost of smelting steel products. [0003] In recent years, due to the continuous recycling of steel scrap, there are more and more scrap steel resources, and the electricity price has also continued to decrease. Domestic short-process electric furnace steelmaking based on scrap steel is increasingly rising, resulting in the gradual increas...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/02C22C38/04C22C38/12C22C38/16C21D8/02B22D11/06
CPCC22C38/02C22C38/04C22C38/12C22C38/16C22C38/008C21D8/0226B22D11/0622B22D11/064B22D11/0651C21D2211/005C21D2211/002Y02P10/20
Inventor 吴建春
Owner BAOSHAN IRON & STEEL CO LTD
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