High-toughness hot work die steel and production method thereof
A technology of hot-working die steel and production method, which is applied in the field of alloy steel manufacturing technology, can solve the problems that the performance of carbon steel cannot fully meet the needs, etc., and achieve the effects of reducing annual consumption, reducing manufacturing costs, good toughness and wear-resistant durability
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Embodiment 1
[0036] Strong and tough hot working die steel, the composition and weight percentage of the die steel are as follows.
[0037] C 0.36%; Si 0.8%; Mn 0.7%; Cr 4.8%.
[0038] Mo 1.3%; V 0.8%; W 0.3%; Ni 0.4%.
[0039] Co 0.1%; Nb 0.08%; RE 0.008%; S≤0.003%; P ≤0.025%; Fe balance.
[0040] The above-mentioned production method of strong and tough hot work die steel can be implemented according to the following steps.
[0041] (1) Melting: Melting according to the traditional conventional method, placing the batch materials meeting the chemical composition requirements in an intermediate frequency induction furnace, smelting at 1590°C, and then pouring the steel ingot.
[0042] (2) Electroslag remelting: Put the above-mentioned steel ingot as a consumable electrode in an electroslag remelting device for secondary refining; use electric current through the electroslag layer to generate resistance heat to melt the consumable electrode alloy base material, liquid The metal falls in the form of ...
Embodiment 2
[0049] Strong and tough hot working die steel, the composition and weight percentage of the die steel are as follows.
[0050] C 0.45%; Si 0.95%; Mn 0.8%; Cr 5.5%.
[0051] Mo 1.8%; V 1.0%; W 0.6%; Ni 0.5%.
[0052] Co 0.2%; Nb 0.12%; RE 0.012%; S≤0.003%; P ≤0.025%; Fe balance.
[0053] The above-mentioned production method of strong and tough hot work die steel can be implemented according to the following steps.
[0054] (1) Melting: Melting according to the traditional conventional method, placing the batch materials meeting the chemical composition requirements in an intermediate frequency induction furnace, smelting at a temperature of 1610°C, and then pouring the steel ingot.
[0055] (2) Electroslag remelting: Put the above-mentioned steel ingot as a consumable electrode in an electroslag remelting device for secondary refining; use electric current through the electroslag layer to generate resistance heat to melt the consumable electrode alloy base material, liquid The metal fal...
Embodiment 3
[0062] Strong and tough hot working die steel, the composition and weight percentage of the die steel are as follows.
[0063] C 0.4%; Si 0.9%; Mn 0.75%; Cr 4.9%.
[0064] Mo 1.5%; V 0.9%; W 0.5%; Ni 0.44%.
[0065] Co 0.18%; Nb 0.11%; RE 0.01%; S≤0.003%; P ≤0.025%; Fe balance.
[0066] The above-mentioned production method of strong and tough hot work die steel can be implemented according to the following steps.
[0067] (1) Melting: Melting according to the traditional conventional method, placing the batch materials meeting the chemical composition requirements in an intermediate frequency induction furnace, smelting at a temperature of 1660 ℃, and then pouring the steel ingot.
[0068] (2) Electroslag remelting: Put the above-mentioned steel ingot as a consumable electrode in an electroslag remelting device for secondary refining; use electric current through the electroslag layer to generate resistance heat to melt the consumable electrode alloy base material, liquid The metal fal...
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