High performance hot work mould steel
A high-performance technology for hot work die steel, applied in the field of hot work die steel, can solve problems such as cavity cracks, mold cracks, and inability to use, and achieve excellent thermal wear resistance and aluminum liquid corrosion resistance , Excellent thermal oxidation resistance and thermal shock resistance, the effect of reducing consumption and various costs
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Embodiment 1
[0012] In one embodiment of the present invention, the high-performance hot work die steel of the present invention comprises the following chemical composition in weight percent:
[0013] C: 0.70-1.00, Si: 0.40-1.10, Mn: 0.50-0.70, Cr: 0.80-1.20, W: 0.80-1.00, Mo: 1.00-1.30, Ni: 1.10-1.80, V: 0.40-0.60, Bi: 0.01 ~ 0.02, rare earth silicon magnesium: 0.05 ~ 0.08, P < 0.03, S < 0.03, the balance is Fe and unavoidable trace impurities.
Embodiment 2
[0015] In another embodiment of the present invention, the high-performance hot work die steel of the present invention includes the following chemical components in weight percent:
[0016] C: 1.20-1.60, Si: 0.50-0.80, Mn: 0.40-0.60, Cr: 1.00-1.40, W: 0.90-1.20, Mo: 1.10-1.40, Ni: 1.50-2.50, V: 0.50-0.80, Bi: 0.01~0.02, rare earth silicon magnesium: 0.05~0.07, P<0.03, S<0.03, the balance is Fe and unavoidable trace impurities.
Embodiment 3
[0018] In yet another embodiment of the present invention, the high-performance hot work die steel of the present invention includes the following chemical components in weight percent:
[0019] C: 1.60-1.80, Si: 0.70-1.20, Mn: 0.30-0.50, Cr: 1.50-1.80, W: 1.10-1.30, Mo: 1.20-1.50, Ni: 1.60-2.80, V: 0.70-1.00, Bi: 0.01~0.02, rare earth silicon magnesium: 0.05~0.07, P<0.03, S<0.03, the balance is Fe and unavoidable trace impurities.
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