Steel material for taylor welded blank and method for manufacturing hot-stamped part using same steel
In accordance with one aspect of the present disclosure, there is provided a steel material for a tailor-welded blank, including 0.04 to 0.06 wt % of carbon (C), 1.2 to 1.5 wt % of manganese (Mn), 0.01 to 0.10 wt % of titanium (Ti), 0.01 to 0.10 wt % of niobium (Nb), and the balance of iron (Fe) and inevitable impurities; having a tensile strength (TS) of 550 MPa or greater, a yield strength (YS) of 300 MPa or greater, and an elongation (EL) of 20% or greater; and having a dual-phase structure of ferrite and martensite.
1. A steel material for a tailor-welded blank, comprising 0.04 to 0.06 wt % of carbon, 1.2 to 1.4 wt % of manganese, 0.07 to 0.10 wt % of titanium, 0.01 to 0.10 wt % of niobium, 0 wt % of molybdenum, and the balance of iron and inevitable impurities, and
having a tensile strength of 550 MPa to 605 MPa, a yield strength of 300 MPa to 461 MPa, and an elongation of 20% to 32.7%, a standard deviation of average elongation of not more than 1.6 measured using 10 specimens of the steel material, and having a dual-phase structure of ferrite and martensite.
2. The steel material of claim 1 , further comprising more than 0 wt % and not more than 0.03 wt % of silicon, more than 0 wt % and not more than 0.018 wt % of phosphorus, and more than 0 wt % and not more than 0.003 wt % of sulfur.
3. The steel material of claim 1 , comprising an aluminum-silicon plating layer for improving corrosion resistance on a surface of the material.