A cr5 series hot work die steel
A hot work die steel and die technology, applied in the field of iron-based alloys, can solve the problems of easy cracking, poor thermal strength and wear resistance, and die wear
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Embodiment 1
[0108] The preparation method of Cr5 series hot working die steel is characterized in that it comprises steps: electric furnace smelting, LF furnace refining (LADLE FURNACE is the ladle refining furnace), vacuum degassing (VD), mold casting, annealing, electroslag remelting (ESR ), slow cooling, annealing, forging, normalizing, spheroidizing annealing, hydrogen expansion, roughing, inspection, finishing, quenching and tempering, finishing, inspection, and production.
[0109] By controlling the composition of molten steel, the prepared die steel contains C0.44%, Si0.40%, Mn0.60%, P0.010%, S0.002%, Cr5.20%, Ni1. 60%, Mo 0.90.%, V 0.60.%, W 0.55%, Co 0.09%, Al 0.10%, Nb 0.040%, the balance Fe. The obtained product is YB5A steel.
Embodiment 2
[0111] The method of smelting is with embodiment 1. By controlling the composition of molten steel, the prepared mold steel contains C 0.43%, Si 1.00%, Mn 0.40%, P 0.012%, S0.0015%, Cr4.80%, Ni1.40.% in weight % , Mo1.00%, V0.50%, W0.80%, Co0.090.%, Al0.010%, Nb0.030%, the balance Fe. The obtained product is YB5B steel.
Embodiment 3
[0113] The method of smelting is with embodiment 1. By controlling the composition of molten steel, the prepared die steel contains 0.43% C, 0.40% Si, 0.60% Mn, 0.009% P, 0.001% S0, 5.20% Cr, 1.60% Ni, Mo1. 10%, V 0.60%, W 0.55.%, Co 0.53%, Al 0.20%, Nb 0.025%, the balance Fe. The obtained product is YB5C steel.
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