Method for producing a low alloy steel for oil country tubular goods having excellent sulfide stress cracking resistance
View Patent ↗The low alloy steel for oil country tubular goods according to the present invention has a chemical composition containing, by mass percent, C: 0.56 to 1.00%, Si: 0.05 to 0.50%, Mn: 0.05 to 1.00%, P: at most 0.025%, S: at most 0.010%, Al: 0.005 to 0.100%, Mo: 0.40 to 1.00%, V: 0.05 to 0.30%, and O: at most 0.010%, the balance being Fe and impurities, wherein the yield stress thereof is at least 862 MPa, and the half-value width of a [211] crystal surface obtained by X-ray diffraction is at most 0.50°.
1. A method for producing a low alloy steel for oil country tubular goods, comprising the steps of:
hot working a billet to produce a steel material, the billet having a chemical composition containing, by mass percent, C: 0.56 to 1.00%, Si: 0.05 to 0.50%, Mn: 0.05 to 1.00%, P: at most 0.025%, S: at most 0.010%, Al: 0.005 to 0.100%, Mo: 0.40 to 1.00%, V: 0.07 to 0.30%, O: at most 0.010% and N: at most 0.0300%, the balance being Fe and impurities;
subjecting the steel material to quenching treatment including isothermal treatment; and
tempering the steel material having been quenched at a tempering temperature of 650 to 735° C., wherein
the step of subjecting the steel material to quenching treatment including isothermal treatment comprises:
an initial cooling step of cooling the steel material from the quenching temperature to a temperature exceeding 100° C. and not higher than 300° C. at a cooling rate of 0.7° C./s or higher;
an isothermal treatment step of holding the steel material having been subjected to the initial cooling step in the temperature range of exceeding 100° C. and not higher than 300° C.; and
a final cooling step of cooling the steel material having been subjected to the isothermal treatment step.
2. The method for producing a low alloy steel for oil country tubular goods according to claim 1 , further comprising the step of subjecting the steel material to normalizing treatment after the hot working and before the quenching.
3. The method for producing a low alloy steel for oil country tubular goods according to claim 1 , wherein the yield stress of the low alloy steel is at least 862 MPa; and the half-value width of a [211] crystal surface of the low alloy steel obtained by X-ray diffraction is at most 0.50 degree.
4. The method for producing a low alloy steel for oil country tubular goods according to claim 3 , wherein the aspect ratio of carbide of the low alloy steel is 0.45 or above.
5. The method for producing a low alloy steel for oil country tubular goods according to claim 3 , wherein the C content of the chemical composition is 0.61 to 1.00%.
6. The method for producing a low alloy steel for oil country tubular goods according to claim 2 , wherein the yield stress of the low alloy steel is at least 862 MPa; and the half-value width of a [211] crystal surface of the low alloy steel obtained by X-ray diffraction is at most 0.50 degree.
7. The method for producing a low alloy steel for oil country tubular goods according to claim 6 , wherein the aspect ratio of carbide of the low alloy steel is 0.45 or above.
8. The method for producing a low alloy steel for oil country tubular goods according to claim 6 , wherein the C content of the chemical composition is 0.61 to 1.00%.