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Superhigh strength steel plate with yield strength more than 1100Mpa and method for producing same

A yield strength and ultra-high strength technology, applied in the field of steel material manufacturing, can solve problems such as increased alumina inclusions, high process costs, and refractory materials brought into molten steel at the ladle nozzle, achieving simple and easy process control and easy composition design , the effect of good low temperature toughness

Active Publication Date: 2006-10-04
BAOSHAN IRON & STEEL CO LTD
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0011] It can be seen from the above comparative patents that these patents have one or more of the following deficiencies: ① A relatively high content of expensive alloy elements is added, and the cost of steel is high
For example, the nickel added in JP 60121219 and JP 89025371 is 1.00% to 3.50%, and the chromium content is 0.40% to 1.20%; the nickel content in WO 200039352 is not less than 1.0%; ②The process is complicated and the process cost is high
For example, the carbon content in patent WO 9905335 is as low as 0.05-0.10%, the carbon content in patent GB 2132225 is 0.04%-0.16%, and the carbon content in patent 98802878.6 is 0.02-0.10%. Too low carbon content results in long decarburization time during steelmaking , low smelting production efficiency; in patents 98812439.4 and 98812446.7, not only the quenching rate is low, but also online quenching after hot rolling is not used, which reduces production efficiency
The Weldox1100 series produced by SSAB in Sweden and the Dillimax series of high-strength steel produced in Dillingen, Germany, use high aluminum content (not less than 0.02%), which has the following disadvantages: the nozzle of high-aluminum steel is easy to nodulate during pouring, and it is easy to Ladle nozzle refractories are brought into the molten steel; too much aluminum will cause a significant increase in alumina inclusions in the steel, and a longer vacuum degassing time is required to promote the inclusions to float up; fine aluminum nitride fine precipitates of aluminum grains are welded to the steel plate When completely dissolved, so that the welding heat-affected zone grain coarse
③The strength level of the steel plate is low
Such as patent WO 200039352 and patent 98812446.7, the tensile strength can only reach more than 830MPa, and the tensile strength of patent 98802878.6 can only reach more than 900MPa

Method used

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Examples

Experimental program
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Embodiment Construction

[0070] See Table 1, Table 2, and Table 3 for specific embodiments of the present invention.

[0071] example

[0072]

[0073]

[0074] It can be seen from the table that the yield strengths of the five examples are all greater than 1100MPa, the elongation is greater than or equal to 13%, and the impact energy at -40°C is greater than 32J, meeting the requirements of the 1100E class.

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PUM

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Abstract

The invention provides a super-strength steel plate comprising the following constituents (by weight percent): C 0.10-0.20%, Si<=0.6%, Mn 0.5-2.5%, Al <=0.03%, N 0.001-0.006%, B 0-0.0025%, Ca 0-0.006%, P<=0.015%, S<=0.005%, Ni 0.2-1.2%, Cr 0-0.8%, Cu 0-0.5% and Mo 0-0.6%, Ti 0.01-0.03%, V 0-0.1%, Nb 0.01-0.1%, balancing Fe and unavoidable foreign substance.

Description

technical field [0001] The invention relates to a method for manufacturing iron and steel materials, in particular to an ultra-high-strength steel plate with a yield strength of 1100 MPa or more and a method for manufacturing the same. Background technique [0002] Internationally, a number of patents have been formed on the manufacturing method of ultra-high-strength steel plates with a yield strength above 700MPa. For example, in the patents JP 60121219 and JP 89025371 of Sumitomo Metal, the tempering process is used to produce high-strength steel and the silicon content in the steel is ≤0.015%. , the nickel content is 1.00% to 3.50%, and the chromium content is 0.40% to 1.20%; [0003] The patent WO 200039352 applied by Exxonmobil Upstream Res is a low-temperature steel, which uses a method of low carbon content (0.03% to 0.12%) and high nickel content (not less than 1.0%) to produce high-strength steel with good low-temperature toughness. It adopts a lower cooling rate ...

Claims

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Application Information

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IPC IPC(8): C22C38/04C22C38/54C22C38/58C21D6/00C21D7/00
Inventor 孙全社张爱文张永嘉吕卫东
Owner BAOSHAN IRON & STEEL CO LTD
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