Method for revolving furnace smelting 45CrMnMo steel

A converter smelting and converter technology, applied in the field of metallurgy, can solve the problems of low alloy yield, prolonged smelting time, less than 90%, etc. Effect

Inactive Publication Date: 2009-10-07
PANGANG GROUP RESEARCH INSTITUTE CO LTD +2
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

In addition, when using electric furnace and converter to smelt ordinary alloy steel containing chromium and molybdenum, chromium and ferromolybdenum alloy are added to the converter molten steel, and 10% of the chromium forms chromium oxides and enters the slag, which thickens the slag and makes the alloy The yield is low, and there is no way to solve it, resulting in the yield of ferrochromium alloy being lower than 90%, and the yield rate of ferromolybdenum alloy being only about 95%.
At the same time, the existing technology also has the defect that the smelting time will be extended correspondingly due to the addition of chromium and ferromolybdenum alloys.

Method used

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  • Method for revolving furnace smelting 45CrMnMo steel
  • Method for revolving furnace smelting 45CrMnMo steel

Examples

Experimental program
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Effect test

Embodiment 1

[0019] Embodiment one uses the inventive method to produce 45CrMnMo steel

[0020] Add 140 tons of molten iron with a sulfur content of ≤0.020% into the converter, and add 5 tons of lime material for conventional oxygen top blowing smelting before tapping. The carbon at the end point of tapping is controlled within the range of 0.35-0.45%, the tapping temperature is controlled at 1660-1700°C, and 2,500kg of ferrochromium containing 60% chromium and molybdenum containing 60% molybdenum are prepared according to 140 tons of molten steel during tapping. 620kg of iron and 1950kg of silicon-manganese alloy containing 66% of manganese and 16% of silicon are gradually added into the molten steel ladle. Metal aluminum is added into the molten steel ladle for deoxidation, and 50Kg of metal aluminum is added to the molten steel together with iron alloys such as ferrochromium and ferromolybdenum for every 140 tons of molten steel. After the steel is tapped, blow argon gas into the molte...

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Abstract

The invention relates to a producing method for revolving furnace smelting 45CrMnMo steel, which belongs to metallurgy field. The technical scheme includes the following steps: a) adding desulphurizing hot-metal into the revolving furnace, and smelting with adding lime stock, b) gradually adding the chromium irons, ferro-molybdenum and silicon-manganese alloy confected by proportion into molten steel parcel during the revolving furnace exporting molten steel, and adding coherer aluminum into the molten steel parcel to be deoxidized at the same time, c) blowing argon gas into the molten steel in the ladle after tapping, d) vacuum treating the molten steel and carrying through micro-adjustment with the chemical constituents in the vacuum procedure at the same time, then casting 45CrMnMo steel. The invention provides a method for revolving furnace producing 45CrMnMo steel, in which the recovery rate of chromium iron is higher, saves more time, improves economic benefit, and provides a better choice for producing 45CrMnMo steel.

Description

technical field [0001] The invention belongs to the field of metallurgy, and in particular relates to a method for smelting 45CrMnMo steel in a converter. Background technique [0002] 45CrMnMo steel is a special steel used in the production of oil drill collars. The drill collar is a key component of the drill string in oil drilling facilities, and it is the part that connects the drill bit and the drill pipe. The main function is to transmit torque to the drill bit, provide drilling pressure, ensure the rigidity and stability of the lower part of the drill string and prevent well deviation. The chemical composition (weight%) of 45CrMnMo steel is: carbon 0.42-0.48%; silicon 0.15-0.30%; manganese 0.75-1.20%; molybdenum 0.15-0.25%; chromium 0.75-1.20%; . Each item of low-magnification structure is ≤2.0, each level of non-metallic inclusions is ≤2.5, and the total level of non-metallic inclusions is ≤16. The grain size of 45CrMnMo steel after heat treatment is ≥5.0, the yi...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/22C22C33/06C21C5/28C21C7/10C21C7/06C21C7/072
Inventor 尤大勇吴雄先郑会军代华云李青春
Owner PANGANG GROUP RESEARCH INSTITUTE CO LTD
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