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Super-thick steel plate for low yield ratio buildings with 460 MPa grade yield strength and manufacturing method

A technology with low yield strength ratio and yield strength, which is applied in the field of ultra-thick steel plates for buildings with yield strength 460MPa and low yield ratio Cost, size and quantity reduction effects

Active Publication Date: 2009-12-30
SHOUGANG CORPORATION
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Problems solved by technology

The Q345MPa grade steel plate commonly used in the past can no longer meet the development needs of steel structure buildings. Some components of the newly completed CCTV main building, the National Swimming Center, and the National Stadium have begun to use Q420 and Q460 grade steel plates with higher strength. It is expected that in the future High-performance Q420, Q460 and higher-level steel grades will be widely used at home and abroad

Method used

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  • Super-thick steel plate for low yield ratio buildings with 460 MPa grade yield strength and manufacturing method
  • Super-thick steel plate for low yield ratio buildings with 460 MPa grade yield strength and manufacturing method
  • Super-thick steel plate for low yield ratio buildings with 460 MPa grade yield strength and manufacturing method

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Embodiment Construction

[0017] The chemical composition, heat treatment process parameters and mechanical properties are shown in Tables 1-4 respectively.

[0018] Table 1 chemical composition (wt%)

[0019]

[0020] Table 2 heat treatment process parameters

[0021]

[0022] Table 3 mechanical properties

[0023]

[0024] Table 4 Mechanical properties (continued)

[0025]

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Abstract

The invention relates to a super-thick steel plate for low yield ratio buildings with 460 MPa grade yield strength and a manufacturing method, which belongs to the technical field of high strength low alloy construction steel. The steel pipe comprises the following components by weight percent: 0.14 to 0.18 percent of C, 0.35 to 0.45 percent of Si, 1.40 to 1.50 percent of Mn, 0.025 to 0.035 percent of Nb, 0.040 to 0.050 percent of V, 0.010 to 0.020 percent of Ti, smaller than 0.020 percent of P, and the balance Fe. The rolling technology is as follows: the heating temperature is 1220 to 1250 DEG C, the tapping temperature is 1200 to 1230 DEG C, and two stages (ausrenitic recrystallization region and ausrenitic non-recrystailization region) are used for controlling rolling. The heat treatment technology is as follows: steel plates, the thickness of which is larger than or equal to 80 mm, are obtained after controlled rolling and cooling are carried out on continuously cast bloom, a two-phase region is heated up to 800 to 850 DEG C and insulated for 10 to 20 minutes, and then water quenching is adopted and the final cooling temperature is controlled to be less than or equal to 100 DEG C; 450 to 600 DEG C tempering treatment is carried out on the quenched steel plates, and finally the high strength low alloy construction steel plates are obtained. The steel plate not only has excellent comprehensive mechanical properties, but also lowers the cost and reduces the waste of resources.

Description

technical field [0001] The invention belongs to the technical field of low-alloy high-strength steel for construction, and in particular relates to an extra-thick steel plate for construction with a yield strength of 460 MPa and a low yield strength ratio and a manufacturing method. Tempering heat treatment to realize the production of ultra-thick steel plate Q460GJ with low yield ratio and high strength for construction with a thickness specification ≥ 80mm. Background technique [0002] With the rapid development of my country's national economy, the market demand for thick steel plates for construction is increasing, and the requirements for steel plate thickness specifications are constantly increasing, and performance requirements are constantly improving. The Q345MPa grade steel plate commonly used in the past can no longer meet the development needs of steel structure buildings. Some components of the newly completed CCTV main building, the National Swimming Center, a...

Claims

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Application Information

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IPC IPC(8): C22C38/14C21D8/02C21D1/18
Inventor 隋鹤龙姜中行白学军李春智顾林豪吴斌麻庆申刘春明刘建明田士平刘印良何元春唐帅郑会平沈开照
Owner SHOUGANG CORPORATION
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