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Preparation method of steel plate and steel strip for 160MPa grade weather-resistant low yield point damper

A low yield point and damper technology, applied in the metallurgical field, can solve the problems of poor weather resistance, poor weather resistance, and lower maintenance costs.

Active Publication Date: 2017-12-15
WUKUN STEEL
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] These patent documents all involve the manufacture of 160MPa low-yield steel. From the perspective of composition and performance, the steel types involved in the above documents have poor weather resistance, and it is necessary to apply anti-corrosion coatings to delay the corrosion of damper steel in the atmosphere. Extends the life of the damper
[0005] The invention relates to a 160MPa level weather-resistant low-yield point damper steel plate and a steel strip and a preparation method thereof to solve the problem of poor weather resistance of the existing low-yield point damper steel, prolong the service life of the damper, and reduce the use and maintenance cost

Method used

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  • Preparation method of steel plate and steel strip for 160MPa grade weather-resistant low yield point damper
  • Preparation method of steel plate and steel strip for 160MPa grade weather-resistant low yield point damper
  • Preparation method of steel plate and steel strip for 160MPa grade weather-resistant low yield point damper

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Experimental program
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Effect test

Embodiment 1

[0033] A. Hot metal pretreatment desulfurization: blast furnace hot metal (chemical composition C 4.2wt%, Si 0.25wt%, Mn 0.40wt%, P0.115wt%, S 0.030wt%, the rest is Fe and unavoidable impurities) transport To the KR method molten iron pretreatment device for desulfurization treatment, the insertion depth of the stirring head is controlled at 2000mm, according to 11.0 kg / t 钢 Add the conventional CaO-based desulfurizer for desulfurization treatment, and control the stirring time to 6 minutes; after the stirring, carry out the slag removal operation to ensure that the molten iron surface in the ladle is exposed ≥ 4 / 5, and remove the desulfurization slag; the molten iron composition after pretreatment The control is: chemical composition C 4.2wt%, Si 0.25wt%, Mn 0.40wt%, P0.115wt%, S 0.008wt%, the rest is Fe and unavoidable impurities.

[0034] B. Converter smelting of molten iron: 980kg / t in step A 钢 Pretreated desulfurized hot metal (chemical composition C 4.2wt%, Si0.25wt%, Mn...

Embodiment 2

[0048] A, hot metal pretreatment desulfurization: blast furnace hot metal (chemical composition C 4.4wt%, Si 0.38wt%, Mn 0.50wt%, P0.102wt%, S0.025wt%, the rest is Fe and unavoidable impurities) transport To the KR method molten iron pretreatment device for desulfurization treatment, the insertion depth of the stirring head is controlled at 2200mm, according to 12.0 kg / t 钢 Add the conventional CaO-based desulfurizer for desulfurization treatment, and control the stirring time to 6 minutes; after the stirring, carry out the slag removal operation to ensure that the molten iron surface in the ladle is exposed ≥ 4 / 5, and remove the desulfurization slag; the molten iron composition after pretreatment The control is: C 4.4wt%, Si 0.38wt%, Mn 0.50wt%, P 0.102wt%, S 0.006wt%, the rest is Fe and unavoidable impurities.

[0049] B. Converter smelting of molten iron: 980kg / t in step A 钢 Pretreated desulfurized hot metal (chemical composition C 4.4wt%, Si0.38wt%, Mn 0.50wt%, P 0.102wt%,...

Embodiment 3

[0063] A. Hot metal pretreatment desulfurization: blast furnace hot metal (chemical composition C 4.6wt%, Si 0.50wt%, Mn 0.60wt%, P0.090wt%, S 0.020wt%, the rest is Fe and unavoidable impurities) transport To the KR method molten iron pretreatment device for desulfurization treatment, the insertion depth of the stirring head is controlled at 2300mm, according to 13.0 kg / t 钢 Add the conventional CaO-based desulfurizer for desulfurization treatment, and control the stirring time to 6 minutes; after the stirring, carry out the slag removal operation to ensure that the molten iron surface in the ladle is exposed ≥ 4 / 5, and remove the desulfurization slag; the molten iron composition after pretreatment The control is: C 4.6wt%, Si 0.50wt%, Mn 0.60wt%, P 0.090wt%, S0.004wt%, the rest is Fe and unavoidable impurities.

[0064] B. Converter smelting of molten iron: 980kg / t in step A 钢 Pretreated desulfurized hot metal (chemical composition C 4.6wt%, Si0.50wt%, Mn 0.60wt%, P 0.090wt%,...

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Abstract

The invention discloses steel for a 160MPa grade weather-resistant low yield point damper and a a preparation method. The chemical components comprise 0.02-0.03wt% of C, 0.01-0.03wt% of Si, 0.10-0.25wt% of Mn, less than or equal to 0.015wt% of S, 0.030-0.050% of P, 0.025-0.045wt% of Als, 0.10-0.20wt% of Ni, 0.20-0.40wt% of Cr, 0.20-0.50wt% of Cu, 0.015-0.030wt% of Ti, 0.0010-0.0020wt% of B, less than or equal to 0.0040wt% of N, less than or equal to 0.0020wt% of O, less than or equal to 0.00015wt% of H, less than or equal to 0.25wt% of Ceq and the balance of Fe and inevitable impurities. A steel plate and a steel strip for the 160MPa grade weather-resistant low yield point damper are prepared by the following steps: pre-treatment desulfurization of blast furnace molten iron; converter smelting of molten iron; deoxidizing alloying of molten steel; LF furnace refining of molten steel; VD vacuum refining of molten steel; casting of molten steel; heating of a steel blank; descaling of the steel blank; controlled rolling and controlled cooling of the molten steel; finish rolling and cooling and the like. The steel disclosed by the invention overcomes the defect that existing steel for the low yield point damper is poor in weather resistance, so that the service life of the damper is prolonged, and the using and maintenance costs are lowered.

Description

technical field [0001] The invention belongs to the technical field of metallurgy, and in particular relates to a 160MPa grade weather-resistant low-yield-point damper steel and a preparation method thereof. Background technique [0002] Damper is a device for energy consumption and shock absorption in passive control of structures. Damper devices are installed in some parts of large and medium-sized steel structures (such as supports, shear walls, joints or connectors), and the use of dampers with low yield point steel It has excellent plastic deformation performance. During earthquake or wind vibration, the steel with low yield point of the damper undergoes plastic yield hysteretic deformation to dissipate the energy input into the structure, absorb the energy input into the structure by earthquake or wind vibration, and reduce the main body The earthquake response of the structure, so as to avoid the damage or collapse of the structure, and achieve the purpose of shock ab...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/02C22C38/04C22C38/06C22C38/42C22C38/50C22C38/54C21C1/02C21C7/06C21C7/00C21C7/10C21D8/02
CPCC21C1/025C21C7/0006C21C7/06C21C7/10C21D8/0226C21D2211/003C21D2211/005C22C38/001C22C38/002C22C38/02C22C38/04C22C38/06C22C38/42C22C38/50C22C38/54
Inventor 张瑜陈伟张卫强王卫东张红斌赵卫东邓家木王文峰
Owner WUKUN STEEL
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