High-boron high-chromium low-carbon high-temperature-resistant wear-resisting alloy steel and manufacturing method thereof
A high-chromium low-carbon, alloy steel technology, applied in the field of iron and steel materials, can solve the problems of strength, toughness and red hardness that have not been solved, and have not been widely promoted and applied, so as to achieve good oxidation resistance and increase high temperature resistance. Oxidation, production cost reduction effect
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Embodiment 1
[0052] (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 to pass, raise the temperature of the melt to 1560~1600℃ , adding silicon-calcium alloy for pre-deoxidation, adding aluminum for final deoxidation, and then sequentially adding ferro-titanium, ferro-boron and metal aluminum to melt;
[0053](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 of pouring into the ladle;
[0054] (3) The molten steel that has undergone metamorphic inoculati...
Embodiment 2
[0062] (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 to pass, raise the temperature of the melt to 1560~1600℃ , adding silicon-calcium alloy for pre-deoxidation, adding aluminum for final deoxidation, and then sequentially adding ferro-titanium and ferro-boron to melt;
[0063] (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 of pouring into the ladle;
[0064] (3) The molten steel that has undergone metamorphic inoculation treatment in...
Embodiment 3
[0072] (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 to pass, raise the temperature of the melt to 1560~1600℃ , adding silicon-calcium alloy for pre-deoxidation, adding aluminum for final deoxidation, and then sequentially adding ferro-titanium and ferro-boron to melt;
[0073] (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 of pouring into the ladle;
[0074] (3) The molten steel that has undergone metamorphic inoculation treatment in...
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