A kind of high-strength wear-resistant material for mining and preparation method thereof
A wear-resistant material and high-strength technology, applied in the field of metallurgy, can solve problems such as low wear resistance, insufficient strength and toughness, and poor hardenability, and achieve the effects of enhancing comprehensive mechanical properties, optimizing composition and content, and reducing hardness
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Embodiment 1
[0058] The composition and mass percentage of the new high-strength wear-resistant material for mining in this embodiment are as follows: C is 0.31%; Si is 0.145%; Mn is 0.17%; Cr is 2.25%; Ni is 0.065%; Mo is 0.25% ; V is 0.18%; Nb is 0.036%; Al is 0.22%; P is 0.009%; S is 0.002%;
[0059] The technological process of the new type of mining high-strength wear-resistant material produced with the above-mentioned composition ratio is as follows:
[0060] (1) Electric furnace smelting: carry out electric furnace smelting and smelting temperature greater than 1500 DEG C, refining (LF) and vacuum treatment (VD) according to the composition and mass percentage ingredients in the above-mentioned embodiment, and cast into Φ360 electrode blanks for parallel annealing.
[0061] (2) Electroslag remelting: Electroslag remelting is performed on the electrode blank, slag-forming time: 20min current 3500A, refining 30min current 7000A. Remelting voltage: 73V Current: 8000A~13000A. Feeding...
Embodiment 2
[0096] The composition and mass percentage of the new high-strength wear-resistant material for mining in this embodiment are as follows: C is 0.35%; Si is 0.13%; Mn is 0.20%; Cr is 1.10%; Ni is 0.33%; Mo is 0.65% ; V is 0.44%; Nb is 0.25%; Al is 0.4%; P is 0.008%; S is 0.001%; the rest is Fe.
[0097] The technological process of the new type of mining high-strength wear-resistant material produced with the above-mentioned composition ratio is as follows:
[0098] (1) Electric furnace smelting: carry out electric furnace smelting and smelting temperature greater than 1500 DEG C, refining (LF) and vacuum treatment (VD) according to the composition and mass percentage ingredients in the above-mentioned embodiment, and cast into Φ380 electrode blanks for parallel annealing.
[0099] (2) Electroslag remelting: Electroslag remelting is performed on the electrode blank, slag-forming time: 20min current 3500A, refining 30min current 7000A. Remelting voltage: 73V Current: 8000A~13...
Embodiment 3
[0120] The composition and mass percentage of the new high-strength wear-resistant material for mining in this embodiment are as follows: C: 0.33%; Si: 0.24%; Mn: 0.08%; Cr: 2.05%; Ni: 0.12%; Mo: 0.90% ; V is 0.42%; Nb is 0.340%; Al is 0.30%; P is 0.008%; S is 0.002%; the rest is Fe.
[0121] The technological process of the new type of mining high-strength wear-resistant material produced with the above-mentioned composition ratio is as follows:
[0122] (1) Electric furnace smelting: carry out electric furnace smelting and smelting temperature greater than 1500 DEG C, refining (LF) and vacuum treatment (VD) according to the composition and mass percentage ingredients in the above-mentioned embodiment, and cast into Φ330 electrode blanks for parallel annealing.
[0123] (2) Electroslag remelting: Electroslag remelting is performed on the electrode blank, slag-forming time: 20min current 3500A, refining 30min current 7000A. Remelting voltage: 73V Current: 8000A~13000A. Feedi...
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