Method for preparing high grade non-oriented electrical steel adding rare earth cerium
A technology of oriented electrical steel and high grade, which is applied in the field of electrical steel, can solve the problems of high cost, increased cost, and low magnetic properties, and achieve the effect of low cost and improved magnetic properties
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Embodiment 1
[0021] The chemical composition of the experimental steel slab is as follows:
[0022] Table 1 Main chemical composition of experimental steel slabs
[0023] Sample No. C, % Si, % Al, % Mn, % S, % P, % N, % Ce, % Ce / S
A comparative steel 0.005 3.19 1.08 0.29 0.004 <0.02 0.0038 - -
B comparative steel 0.005 3.24 1.13 0.30 0.004 <0.02 0.0039 - -
C invention steel 0.005 3.21 1.06 0.28 0.004 <0.02 0.0040 0.0061 1.5
D invention steel 0.004 3.16 1.10 0.28 0.003 <0.02 0.0037 0.019 6.3
E invention steel 0.005 3.10 1.00 0.28 0.004 <0.02 0.0042 0.0028 0.7
F invention steel 0.005 3.21 1.07 0.29 0.005 <0.02 0.0044 0.019 3.8
G invention steel 0.004 3.10 1.13 0.28 0.004 <0.02 0.0041 0.0077 1.9
H invention steel 0.003 3.21 1.10 0.28 0.004 <0.02 0.0038 0.016 4.0
[0024] The experimental steel was heated to 950-1150°C, kept warm for 0.5-5h, and then hot-rolled to a thickness of 2.0-2.5mm. After normalization at 900-1050°C×60-300s, it was pickled ...
Embodiment 2
[0028] The experimental steel is heated to 1100-1150°C, held for 0.5-5h, then hot-rolled to a thickness of 2.0-2.5mm, after normalization at 900-1050°C×60-300s, pickled and cold-rolled to 0.50mm, annealed at 900-1050°C ×60~180s, the annealing atmosphere is 30%H 2 +70%N 2 Mixed gas, without decarburization annealing, the cooling method is to cool the furnace mouth to 500-400 ℃, and then air-cool to room temperature for magnetic detection. The magnetic properties of 0.50mm experimental steel products are shown in Table 3:
[0029] Table 3 Magnetic properties of finished 0.50mm experimental steel
[0030]
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