Austenitic steel having excellent machinability and ultra-low temperature toughness in weld heat-affected zone, and method of manufacturing the same
Provided are an austenitic steel having excellent machinability and ultra-low temperature toughness in a weld heat-affected zone including 15 wt % to 35 wt % of manganese (Mn), carbon (C) satisfying 23.6C+Mn≥28 and 33.5C−Mn≤23, 5 wt % or less (excluding 0 wt %) of copper (Cu), chromium (Cr) satisfying 28.5C+4.4Cr≤57 (excluding 0 wt %), and iron (Fe) as well as other unavoidable impurities as a remainder, wherein a Charpy impact value of a weld heat-affected zone at −196° C. is 41 J or more, and a method of manufacturing the steel. According to the present invention, a low-cost ultra-low temperature steel may be obtained, a stable austenite phase may be formed at low temperature, carbide formation may be effectively suppressed, and a structural steel having excellent machinability and ultra-low temperature toughness in a weld heat-affected zone may be provided.
1. An austenitic steel having improved machinability and ultra-low temperature toughness in a weld heat-affected zone, the austenitic steel comprising:
a parent material and a weld heat-affected zone,
wherein the parent material comprises:
15 wt % to 35 wt % of manganese (Mn);
carbon (C) satisfying 23.6C+Mn≥28 and 33.5C−Mn≤23;
5 wt % or less (excluding 0 wt %) of copper (Cu);
chromium (Cr) satisfying 28.5C+4.4Cr≤57 (excluding 0 wt %);
0.012 wt % to 0.13 wt % of nitrogen (N);
0.5 wt % or less (excluding 0 wt %) of niobium (Nb); and
iron (Fe) as well as other unavoidable impurities as a remainder, and
wherein a microstructure of the weld heat-affected zone comprises austenite having an area fraction of 95% or more, and
wherein an area fraction of carbide located at austenite grain boundaries in the weld heat-affected zone is 5% or less.
2. The austenitic steel having improved machinability and ultra-low temperature toughness in a weld heat-affected zone of claim 1 , the parent material further comprising:
0.03 wt % to 0.1 wt % of sulfur (S); and
0.001 wt % to 0.01 wt % of calcium (Ca),
wherein a Charpy impact value of the weld heat-affected zone at −196° C. is 41 J or more.
3. The austenitic steel having improved machinability and ultra-low temperature toughness in a weld heat-affected zone of claim 1 , the parent material further comprising at least one of 0.5 wt % or less of titanium (Ti), and 0.5 wt % or less of vanadium (V).