Thin steel plate having excellent low-temperature toughness and CTOD properties, and method for manufacturing same
The present invention relates to structural steel that can be desirably used in offshore structures and the like, more specifically, to a thin steel plate having excellent low-temperature toughness and CTOD properties, and to a method for manufacturing the same.
1 . A thin steel plate having excellent low-temperature toughness and CTOD properties, the thin steel plate consisting of, by weight:
0.05 to 0.1% of carbon (C), 0.05 to 0.3% of silicon (Si), 1.0 to 2.0% of manganese (Mn), 0.005 to 0.04% of aluminum (Sol. Al), 0.005 to 0.03% of niobium (Nb), 0.005 to 0.02% of titanium (Ti), 0.05 to 0.4% of copper (Cu), 0.3 to 1.0% of nickel (Ni), 0.001 to 0.008% of nitrogen (N), 0.01% or less of phosphorus (P), and 0.003% or less of sulfur(S), with a balance of Fe and other unavoidable impurities,
wherein the thin steel plate includes acicular ferrite having an area fraction of 30 to 50% and polygonal ferrite having an area fraction of 50 to 70% as a microstructure,
wherein the acicular ferrite has an average crystal grain size of 20 μm or less and the polygonal ferrite has an average crystal grain size of 20 to 35 μm, and
wherein the thin steel plate has a thickness of 8 to 30 mm.
2 . The thin steel plate having excellent low-temperature toughness and CTOD properties of claim 1 , wherein the thin steel plate further includes one or more of bainite and cementite in an area fraction of 2% or less.
3 . The thin steel plate having excellent low-temperature toughness and CTOD properties of claim 1 , wherein the thin steel plate has a thickness of 8 to 15 mm.
4 . The thin steel plate having excellent low-temperature toughness and CTOD properties of claim 1 , wherein the thin steel plate has a yield strength of 460 MPa or more, an elongation of 17% or more, an impact toughness at −40° C. of 50 J or more, and a CTOD value at −20° C. of 0.4 mm or more.