High-speed tool steel for drill bit
A high-speed tool steel and high-speed steel technology, applied in the field of alloy steel, can solve the problems of low tool life and narrow quenching temperature range, and achieve the effects of wide quenching temperature range, uniform carbide distribution, and grain refinement.
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Embodiment 1
[0018] A high-speed tool steel for drill bits, its components are C, W, Mo, Cr, V, Mn, Si, Nb, Co, P, S and Fe, and the weight percentage of each component is C: 0.92%; W: 5.30%; Mo: 4.60%; Cr: 4.70%; V: 1.80%; Mn: 0.25%; Si: 0.20%; Nb: 0.08%; Co: 1.32%; P: ≤0.02%; S: ≤0.007%; The sum of copper and nickel content does not exceed 0.25%; the rest is Fe.
[0019] The organization performance of this embodiment is shown in Table 1:
[0020] Table 1
[0021]
Embodiment 2
[0023] A high-speed tool steel for drill bits, the chemical composition of which is C, W, Mo, Cr, V, Mn, Si, Nb, Co, P, S and Fe, and the weight percentage of the composition range is C: 0.90%; W: 5.00% ; Mo: 4.50%; Cr: 4.55%; V: 1.90%; Mn: 0.25%; Si: 0.29%; Nb: 0.28%; Co: 1.30%; P: ≤0.03%; S: ≤0.007%; copper and The sum of nickel content does not exceed 0.25%; the rest is Fe.
[0024] The organization performance of this embodiment is shown in Table 2:
[0025] Table 2
[0026]
Embodiment 3
[0028] A high-speed tool steel for drill bits, the chemical composition of which is C, W, Mo, Cr, V, Mn, Si, Nb, Co, P, S and Fe, and the weight percentage of the composition range is C: 0.91%; W: 5.60% Mo: 4.50%; Cr: 4.91%; V: 1.85%; Mn: 0.30%; Si: 0.27%; Nb: 0.30%; Co: 1.50%; P: ≤0.03%; S: ≤0.02%; copper and The sum of nickel content does not exceed 0.25%; the rest is Fe.
[0029] The organization performance of this embodiment is shown in Table 3:
[0030] table 3
[0031]
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