Steel and method of manufacturing the same
Steel has a chemical composition that contains 0.050% to 0.40% of C, 0.50% to 3.0% of Si, 3.0% to 8.0% of Mn, and 0.001% to 3.0% of sol. Al, by mass %, and has a metallographic structure that contains 10% to 40% of austenite in terms of % by volume. The average concentration of C in austenite is 0.30% by 0.60%, by mass %, structure uniformity, which is represented by a value obtained by subtracting the minimum value from the maximum value of Vickers hardness that is measured, in the metallographic structure is 30 Hv or less, and the tensile strength is 900 MPa to 1800 MPa.
1. A method of manufacturing a steel, comprising:
performing a heat treatment with respect to a base steel having a metallographic structure in which an average grain size of a prior austenite is 20 μm or less and which is composed of a martensite single phase,
wherein the heat treatment includes:
a retention process of retaining the base steel at a temperature that is equal to or higher than 670° C. and lower than 780° C., and is lower than an A c3 point for 5 seconds to 120 seconds; and
a cooling process of cooling the base steel in such a manner that an average cooling rate from the temperature region to 150° C. is 5 “C/second to 500° C./second after the retention process, and
wherein the steel has a chemical composition comprising, by mass %:
0.050% to 0.40% of C,
0.50% to 3.0% of Si,
4.0% to 8.0% of Mn,
0.001% to 3.0% of sol. Al,
0.05% or less of P,
0,01% or less of S,
0.01% or less of N,
0% to 1.0% of Ti,
0% to 1.0% of Nb,
0% to 1.0% of V,
0% to 1.0% of Cr,
0% to 1.0% of Mo,
0% to 1.0% of Cu,
0% to 1.0% of Ni,
0% to 0.01% of Ca,
0% to 0.01% of Mg,
0% to 0.01% of REM,
0% to 0.01% of Zr,
0% to 0.01% of B,
0% to 0.01% of Bi, and
the remainder including Fe and impurities.