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Micro-alloy building steel bar containing Ti and Cr and production method of micro-alloy building steel bar

A production method and construction steel technology, applied in the field of iron and steel metallurgy, can solve the problems of low nitrogen content and few types of vanadium nitride alloys, and achieve the effects of high nitrogen yield, simple operation, and stable nitrogen yield

Inactive Publication Date: 2018-03-02
PANZHIHUA IRON & STEEL RES INST OF PANGANG GROUP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0005] Aiming at the problems of low nitrogen content and few types of vanadium nitride alloys used in the preparation of nitrogen-containing alloy steels, the present invention provides a new method for preparing nitrogen-containing alloys

Method used

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  • Micro-alloy building steel bar containing Ti and Cr and production method of micro-alloy building steel bar
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  • Micro-alloy building steel bar containing Ti and Cr and production method of micro-alloy building steel bar

Examples

Experimental program
Comparison scheme
Effect test

Embodiment 1

[0049] Embodiment 1 uses the inventive method to prepare containing Ti, Cr microalloy building steel bar

[0050] A steel plant adopts the technology of the present invention to produce ribbed steel bars for construction in the converter process with a nominal capacity of 120 tons (the actual steel output is in the range of 120 to 140 tons). The production process is converter smelting → blowing inert gas after the furnace + feeding Core-spun wire → 6-machine 6-strand billet continuous casting machine casting into 150mm×150mm billet → billet heating → rolling into continuous bar rolling production line Ribbed steel bars.

[0051] Firstly, 120 tons of molten iron and 20 tons of scrap steel are added into the converter, and the S content of the added molten iron is 0.53%. After the molten iron and steel scrap are added to the converter, the molten iron and steel scrap are initially smelted into molten steel by using the function of the converter to blow oxygen to remove C. Whe...

Embodiment 2

[0062] Embodiment 2 prepares Ti, Cr microalloy construction steel bar with the inventive method

[0063] A steel plant adopts the technology of the present invention to produce ribbed steel bars for construction in the converter process with a nominal capacity of 120 tons (the actual steel output is in the range of 120 to 140 tons). The production process is converter smelting → blowing inert gas after the furnace + feeding Core-spun wire → 6-machine 6-strand billet continuous casting machine casting into 200mm×200mm billet → billet heating → rolling into continuous bar rolling production line Ribbed steel bars.

[0064] First, add 120 tons of molten iron and 20 tons of steel scrap into the converter, and the added molten iron S is 0.059%. After the molten iron and steel scrap are added to the converter, the molten iron and steel scrap are initially smelted into molten steel by utilizing the function of the converter to remove C by blowing oxygen. When the composition of the...

Embodiment 3

[0074] Embodiment 3 prepares the bar material containing Ti, Cr microalloy building steel with the inventive method

[0075] A steel plant adopts the technology of the present invention to produce ribbed steel bars for construction in the converter process with a nominal capacity of 120 tons (the actual steel output is in the range of 120 to 140 tons). The production process is converter smelting → blowing inert gas after the furnace + feeding Core-spun wire → 6-machine 6-strand billet continuous casting machine casting into 200mm×200mm billet → billet heating → rolling into continuous bar rolling production line Ribbed steel bars.

[0076]Firstly, 120 tons of molten iron and 20 tons of scrap steel are added into the converter, and the S content of the added molten iron is 0.044%. After the molten iron and steel scrap are added to the converter, the molten iron and steel scrap are initially smelted into molten steel by using the function of the converter to blow oxygen to re...

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Abstract

The invention belongs to the field of ferrous metallurgy, and particularly relates to a micro-alloy building steel bar containing Ti and Cr and a production method of the micro-alloy building steel bar. The micro-alloy building steel bar containing Ti and Cr and the production method of the micro-alloy building steel bar aim to solve the problems that the nitrogen content of an existing vanadium nitride alloy which is selected and used for preparing nitrogen-containing alloy steel is low, and the variety is small. The micro-alloy building steel bar comprises the compositions of, by weight, 0.15-0.30% of C, 0.30-1.00% of Si, 0.60-1.30% of Mn, 0.0060-0.0180% of N, less than or equal to 0.040% of P, less than or equal to 0.040% of S, 0.010-0.050% of Ti, 0.10-0.60% of Cr and the balance Fe andunavoidable impurities. The key point of the preparation method of the micro-alloy building steel bar lies in that a cored wire containing N is fed into a small platform behind a furnace, and the content of N is adjusted to be at an appropriate level. According to the production method of the micro-alloy building steel bar, operation is simple, the nitrogen yielding rate is high and stable, the production cost can further be effectively reduced, and the production method is worth being applied and popularized.

Description

technical field [0001] The invention belongs to the field of iron and steel metallurgy, and in particular relates to a Ti and Cr microalloy building steel rod and a production method thereof. Background technique [0002] Microalloyed steel mainly refers to the steel whose performance can be obviously improved by adding a small amount or a trace amount of certain elements in the steel, especially the strength index of the steel. Under the existing technical conditions, microalloyed steel is mainly obtained by adding a small amount or a small amount of vanadium, niobium and titanium. The mechanism of microalloying is: after adding vanadium, niobium and titanium as trace elements into molten steel, they combine with carbon and nitrogen in molten steel to form carbon and nitrogen compound particles, namely V(C, N), Nb( C, N) and Ti (C, N) particles, these particles have a certain effect of precipitation strengthening and grain refinement, which can significantly improve the st...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/28C22C38/02C22C38/04C21D8/06C21C7/00
CPCC21C7/0056C21D8/065C22C38/001C22C38/02C22C38/04C22C38/28Y02P10/20
Inventor 邓通武刘明郭跃华冉准
Owner PANZHIHUA IRON & STEEL RES INST OF PANGANG GROUP
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