High-strength steel having excellent low-yield-ratio characteristics, and manufacturing method therefor
A high-strength steel having excellent low-yield-ratio characteristics, according to one embodiment of the present invention, comprises, by wt %, 0.06-0.12% of C, 0.2-0.5% of Si, 1.5-2.0% of Mn, 0.003-0.05% of Al, 0.01% or less of N, 0.02% or less of P, 0.003% or less of S, 0.05-0.5% of Cr, 0.05-0.5% of Mo, 0.01-0.05% of Nb, 0.0005-0.005% of Ca and the balance of Fe and other inevitable impurities, and comprises polygonal ferrite as a microstructure, wherein the area fraction of the polygonal ferrite is 10-30% and the average hardness of the polygonal ferrite can be 180 Hv or less.
1. A steel material comprising, by wt %:
0.06 to 0.12% of C, 0.2 to 0.5% of Si, 1.5 to 2.0% of Mn, 0.003 to 0.05% of Al, 0.01% or less of N, 0.02% or less of P, 0.003% of less of S, 0.05 to 0.5% of Cr, 0.05 to 0.5% of Mo, 0.01 to 0.05% of Nb, and 0.0005 to 0.005% of Ca, with a balance of Fe and other unavoidable impurities, and
wherein the polygonal ferrite has an area fraction of 10 to 30% and an average hardness of 180 Hv or less,
wherein the residual structure comprises acicular ferrite, bainite, pearlite, and martensite,
wherein the residual structure as an average hardness of 200 Hv or more,
wherein a sum of area fractions of the pearlite and the martensite is 10% or less, excluding 0%, relative to a total area.
2. The steel material of claim 1 , further comprising, by wt %, one or two or more of: 0.05 to 0.3% of Ni, 0.05 to 0.3% of Cu, 0.005 to 0.02% of Ti, and 0.0005 to 0.0015% of B.
3. The steel material of claim 1 , wherein the steel material has a Charpy impact energy at −30° C. of 200 J or more.
4. The steel material of claim 1 , wherein the steel material has a yield ratio of 90% or less.
5. The steel material of claim 1 , wherein the steel material has a tensile strength of 500 MPa or more.