Corrosion-resisting stainless steel and manufacturing process thereof

A manufacturing process and technology of stainless steel, applied in the field of anti-corrosion stainless steel and its manufacturing process, can solve the problems of increasing the repeated times of heating and processing, it is difficult to completely prevent edge cracking, and the thermal processing performance decline, etc., to achieve good oxidation resistance, Low processing cost, improved hardenability and hardness

Inactive Publication Date: 2012-08-15
JIANGSU JINYUE AVIATION ALLOY MATERIAL
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

Since the hot workability decreases when the boron content increases, it is necessary to process while preventing the temperature of the workpiece from falling, and as a result, it is necessary to increase the number of repetitions of heating and processing
Therefore, an increase in the boron content or a thin-thickness machining of the steel will lead to an increase in manufacturing costs
[0007] In addition, in the surfacing welding of boron-containing stainless steel, sufficient welding thickness is ensured to prevent cracks, resulting in an increase in the number of weld passes and the number of welders
In addition, when welding cracks occur, this will become the starting point and then cause edge cracks, so it is difficult to completely prevent edge cracks

Method used

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  • Corrosion-resisting stainless steel and manufacturing process thereof

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Embodiment Construction

[0034] The present invention will be further described in detail below in combination with specific embodiments.

[0035] (1) Melt scrap steel and ferrochrome in an electric furnace, add copper plate, ferrosilicon, and ferromanganese after the molten steel is melted, control the carbon content to meet the requirements, adjust the composition before the furnace, and raise the temperature of the melt to 1560-1620°C , adding silicon-calcium alloy for pre-deoxidation, adding aluminum for final deoxidation, and then sequentially adding ferro-titanium and ferro-boron to melt;

[0036] (2) After all ferro-titanium and ferro-boron are melted, the granular rare earth magnesium alloy less than 12mm and metal cerium and Si 3 N 4 The composite metamorphic inoculant composed of , Nb and K is wrapped with a thin iron sheet, baked at a temperature of 160-200°C, and placed on the bottom of the ladle, and the smelted molten steel is subjected to metamorphic inoculation treatment by the method...

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Abstract

The invention provides corrosion-resisting stainless steel and a manufacturing process of the corrosion-resisting stainless steel. The corrosion-resisting stainless steel comprises the following chemical components in percentage by weight: less than 0.10% of C, 15-22% of Cr, 0.6-3.0% of Mo, 9.0-10.5% of Ni, 0.40-2.0% of B, less than 0.5% of Cu, less than 1% of Si, less than 0.9% of Mn, 0.2-0.6% of Ti, less than 0.3% of Al, less than 0.05% of N, less than 0.04% of P, less than 0.01% of S and inevitable impurity elements. Therefore, the corrosion-resisting stainless steel has higher hot and cold fatigue resistance, anti-fracture toughness, thermal shock resistance, good hot-working property, and welding performance; the smelting process is simple; and the processing cost is low.

Description

technical field [0001] The invention belongs to the technical field of stainless steel materials, and relates to a corrosion-resistant metal material and a manufacturing process thereof, in particular to a corrosion-resistant stainless steel and a manufacturing process thereof. Background technique [0002] Boron is a special element with an atomic number of 5, which is between metals and nonmetals, and can combine with metals and nonmetals. Boron is the main alloying element in high-chromium cast steel. Adding an appropriate amount of B to high-boron high-chromium cast steel can replace some carbon atoms in carbides to form boron-containing alloy carbides, and make the carbide volume fraction increases with increasing boron content. And the average hardness ratio of boron-containing carbides (Cr, Fe) 7 C 3 Type carbides are improved, and high boron-containing stainless steel is more likely to induce martensitic transformation by friction, resulting in work hardening, and...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): C22C38/54
Inventor 毛征东蒋红军耿德英丁家伟孙健
Owner JIANGSU JINYUE AVIATION ALLOY MATERIAL
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