IF steel containing niobium and titanium for advanced automobile and annealing process
An automobile and advanced technology, applied in the field of metallurgy, can solve the problems of poor production flexibility, complex annealing process and high production cost, and achieve the effects of high production efficiency, low construction investment and low production cost
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Embodiment 1
[0012] Put the slab to be rolled into the heating furnace. The chemical composition and weight percentage of the slab are: C 0.006%, Si 0.005%, Mn 0.14%, P 0.017%, S 0.004%, Alt 0.03%, Ti 0.012 %, Nb 0.023%, the rest is Fe and undetectable trace impurities.
[0013] The heating rate is 6°C / min, the annealing temperature is 700°C, the holding time is 2 hours, and then the furnace is cooled to 450°C and air-cooled. The mechanical properties of the IF steel samples treated according to the above process are shown in Table 1, Table 2, and Table 3. The heating curve and sample texture are as follows: figure 1 , figure 2 shown. The {111} texture is dominant in the sample.
[0014] Table 1 Longitudinal mechanical properties and n, r value properties
[0015]
R P0.2 / MPa
Rm / MPa
R P0.2 / Rm
A%
n
r
126
310
0.41
42
0.26
1.95
147
310
0.47
44
0.268 ...
Embodiment 2
[0021] Put the slab to be rolled into the heating furnace. The chemical composition and weight percentage of the slab are: C 0.006%, Si 0.004%, Mn 0.147%, P 0.011%, S 0.004%, Alt 0.031%, Ti 0.013 %, Nb 0.018%, the rest is Fe and undetectable trace impurities.
[0022] The heating rate is 6°C / min, the annealing temperature is 720°C, the holding time is 2 hours, and then it is cooled to 400°C with the furnace and air-cooled. The test values of the mechanical properties of the IF steel samples treated according to the above process are shown in Tables 4, 5, and 6. The heating curve and sample texture are as follows: image 3 , Figure 4 shown. The {111} texture is dominant in the sample.
[0023] Table 4 Longitudinal mechanical properties and n, r value properties
[0024] R P0.2 / MPa
Rm / MPa
R P0.2 / Rm
A%
n
r
137
325
0.42
49.5
0.25
2.12
137
325
0.42
49
0.25
2...
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