600MPa-level vanadium-containing hot-galvanizing dual-phase steel and preparation method thereof
A hot-dip galvanized, dual-phase steel technology, applied in hot-dip galvanizing process, coating, metal material coating process, etc., can solve the problem of affecting coating and welding, without comprehensive consideration of production cost, formability, galvanizing performance and Solve problems such as weldability, galvanized surface quality, and weldability decline, and achieve the effects of increasing strength, improving surface galvanizing quality, and improving forming and welding performance
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[0044] The preparation method of the 600MPa grade vanadium-containing hot-dip galvanized dual-phase steel of the present invention comprises the following steps:
[0045] a. Smelting process: smelting according to the chemical composition of the above-mentioned 600MPa grade vanadium-containing hot-dip galvanized dual-phase steel, and controlling the vanadium content in the converter, specifically to control the original molten iron in the process of vanadium extraction in the converter according to production needs vanadium content, rather than additional ferro-vanadium alloys, and finally cast into slabs;
[0046] b. Hot rolling process: the slab obtained in step a is heated, dephosphorized, hot-rolled, laminar cooling and coiled to obtain hot-rolled coils; the heating temperature is 1200-1300 °C, and the finishing rolling temperature is 1000 °C. ~1100℃, the final rolling temperature is 850~950℃, the hot rolling thickness is 4~5mm, and the coiling temperature is 550~650℃;
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Embodiment 1
[0057] The preparation method of the 600MPa grade vanadium-containing hot-dip galvanized dual-phase steel provided by the present invention has the following processes:
[0058] (1) Through the smelting process, a dual-phase steel slab with the chemical composition shown in Table 1 is prepared:
[0059] Table 1 Chemical Composition of Duplex Steel (wt.%)
[0060] Numbering
C
Si
mn
P
S
als
Cr
Mo
V
N
DP1
0.08
0.40
1.50
0.01
0.008
0.050
0.35
0.15
0.04
0.004
DP2
0.09
0.32
1.60
0.01
0.006
0.030
0.25
0.12
0.02
0.005
[0061] (2) Hot-rolled coils are obtained by heating, dephosphorizing, hot-rolling and laminar cooling of the slab, wherein the finishing rolling temperature is 1000-1100°C, the finishing rolling temperature is 850-950°C, and the coiling temperature is 550°C ~650°C; specific hot rolling process parameters are shown in Ta...
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