Plastic die steel with high intensity, high toughness and high corrosion resistance and production method thereof
A plastic mold steel, high-strength and high-toughness technology, applied in the direction of manufacturing tools, furnace types, furnaces, etc., can solve problems such as changes due to changes in various factors, comprehensive performance that cannot meet the requirements of the use environment, and unstable product performance. The effect of toughness and corrosion resistance improvement
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Embodiment 1
[0026] Produce high-strength, high-toughness and high-corrosion-resistant plastic mold steel according to the following steps:
[0027] (1) Take the following raw materials in weight percentage: C0.14%, Si:0.33%, Cr11.80%, Mo1.06%, Ni2.40%, W1.10%, V0.21%, Mn0.70 %, the balance is Fe and other impurities; placed in a non-vacuum induction furnace for primary refining, the melting temperature is 1550-1620 °C; and then refined outside the furnace: refining in ladles and vacuum degassing refining furnaces, the melting temperature is 1560-1560 °C 1650°C; during the smelting process, adjust the content of each component to make the weight percentage meet the requirements, control the content of impurities as low as possible, and pour the solution into a consumable electrode;
[0028] (2) Place the consumable electrode in an electroslag furnace for remelting and refining to further reduce the content of impurities so that the impurities meet the following requirements: the weight per...
Embodiment 2
[0037] Produce high-strength, high-toughness and high-corrosion-resistant plastic mold steel according to the following steps:
[0038] (1) Take the following raw materials in weight percentage: C0.15%, Si0.32%, Cr11.50%, Mo1.05%, Ni2.39%, W1.09%, V0.25%, Mn0.65 %, the balance is Fe and other impurities; placed in a non-vacuum induction furnace for primary refining, the melting temperature is 1550-1620 °C; and then refined outside the furnace: refining in ladles and vacuum degassing refining furnaces, the melting temperature is 1560-1560 °C 1650°C; during the smelting process, adjust the content of each component to make the weight percentage meet the requirements, control the content of impurities as low as possible, and pour the solution into a consumable electrode;
[0039] (2) Place the consumable electrode in an electroslag furnace for remelting and refining to further reduce the content of impurities so that the impurities meet the following requirements: the weight perc...
Embodiment 3
[0048] Produce high-strength, high-toughness and high-corrosion-resistant plastic mold steel according to the following steps:
[0049] (1) Take the following raw materials in weight percentage: C0.135%, Si0.35, Cr12.00%, Mo1.04%, Ni2.41%, W1.08%, V0.22%, Mn0.68% , the balance is Fe and other impurities; placed in a non-vacuum induction furnace for primary refining, the melting temperature is 1550-1620 °C; and then refined outside the furnace: refining in ladles and vacuum degassing refining furnaces, the melting temperature is 1560-1650 °C ℃; during the smelting process, adjust the content of each component to make the weight percentage meet the requirements, control the content of impurities as low as possible, and pour the solution into a consumable electrode;
[0050] (2) Place the consumable electrode in an electroslag furnace for remelting and refining to further reduce the content of impurities so that the impurities meet the following requirements: the weight percentag...
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