Claims
- 1. A high-strength steel pipe of API X65 grade or higher consisting essentially of, by mass %, 0.02 to 0.08% of C, 0.01 to 0.5% of Si, 0.5 to 1.8% of Mn, 0.01% or less of P, 0.002% or less of S, 0.01 to 0.07% of Al, 0.005 to 0.04% of Ti, 0.05 to 0.50% Mo, at least one element selected from 0.005 to 0.05% of Nb and 0.005 to 0.10% of V, and the balance being Fe, in which the volume percentage of ferritic phase is 90% or higher, and complex carbides containing Ti, Mo, and at least one element selected from Nb and V are precipitated in said ferritic phase.
- 2. The high-strength steel pipe of API X65 grade or higher according to claim 1, wherein the content of Ti is 0.005 to less than 0.02%.
- 3. A high-strength steel pipe of API X65 grade or higher consisting essentially of, by mass %, 0.02 to 0.08% of C, 0.01 to 0.5% of Si, 0.5 to 1.8% of Mn, 0.01% or less of P, 0.002% or less of S, 0.01 to 0.07% of Al, 0.005 to 0.04% of Ti, at least one element selected from 0.005 to 0.05% of Nb and 0.005 to 0.10% of V, W and Mo meeting the condition that the content of (W/2+Mo) is in the range of 0.05 to 0.50% (however, a case where the content of Mo is 0% is included), and the balance being Fe, in which the volume percentage of ferritic phase is 90% or higher, and complex carbides containing Ti, W, Mo, and at least one element selected from Nb and V are precipitated in said ferritic phase.
- 4. The high-strength steel pipe of API X65 grade or higher according to claim 3, wherein the content of Ti is 0.005 to less than 0.02%.
- 5. The high-strength steel pipe of API X65 grade or higher according to claim 1, wherein said steel pipe further contains 0.0005 to 0.0040% of Ca.
- 6. The high-strength steel pipe of API X65 grade or higher according to claim 3, wherein said steel pipe further contains 0.0005 to 0.0040% of Ca.
- 7. The high-strength steel pipe of API X65 grade or higher according to claim 1, wherein said steel pipe further contains at least one element selected from 0.5% or less of Cu, 0.5% or less of Ni, and 0.5% or less of Cr, by mass %.
- 8. The high-strength steel pipe of API X65 grade or higher according to claim 3, wherein said steel pipe further contains at least one element selected from 0.5% or less of Cu, 0.5% or less of Ni, and 0.5% or less of Cr, by mass %.
- 9. The high-strength steel pipe of API X65 grade or higher according to claim 1, wherein the ratio of the C content to the total content of Mo, Ti, Nb, V and W, R=(C/12)/[(Mo/96)+(Ti/48)+(Nb/93)+(V/51)+(W/184)], expressed by mass %, is in the range of 0.5 to 3.0.
- 10. The high-strength steel pipe of API X65 grade or higher according to claim 3, wherein the ratio R is in the range of 0.5 to 3.0.
- 11. The high-strength steel pipe of API X65 grade or higher according to claim 9, wherein the ratio R is in the range of 0.7 to 2.0.
- 12. The high-strength steel pipe of API X65 grade or higher according to claim 10, wherein the ratio R is in the range of 0.7 to 2.0.
- 13. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 1 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate at a cooling rate not lower than 2° C./s; coiling said cooled steel plate at a temperature in the range of 550 to 700° C.; and forming said coiled steel plate into a steel pipe.
- 14. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 3 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate at a cooling rate not lower than 2° C./s; coiling said cooled steel plate at a temperature in the range of 550 to 700° C.; and forming said coiled steel plate into a steel pipe.
- 15. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 1 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate to a temperature in the range of 600 to 700° C. at a cooling rate not lower than 2° C./s; cooling said cooled steel plate to at least 550° C. at a cooling rate not higher than 0.1° C./s; and forming said steel plate into a steel pipe.
- 16. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 3 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate to a temperature in the range of 600 to 700° C. at a cooling rate not lower than 2° C./s; cooling said cooled steel plate to at least 550° C. at a cooling rate not higher than 0.1° C./s; and forming said steel plate into a steel pipe.
- 17. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 1 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate to a temperature in the range of 550 to 700° C. at a cooling rate not lower than 2° C./s; heating said cooled steel plate immediately after being cooled and keeping it at a temperature in the range of 550 to 700° C. for three minutes or longer; and forming said steel plate into a steel pipe.
- 18. A manufacturing method for a high-strength steel pipe of API X65 grade or higher, comprising the steps of:
heating a steel slab having chemical composition described in claim 3 to a temperature in the range of 1000 to 1250° C.; hot rolling said steel slab at a finish temperature not lower than the Ar3 transformation temperature to make a steel plate; cooling said steel plate to a temperature in the range of 550 to 700° C. at a cooling rate not lower than 2° C./s; heating said cooled steel plate immediately after being cooled and keeping it at a temperature in the range of 550 to 700° C. for three minutes or longer; and forming said steel plate into a steel pipe.
- 19. The manufacturing method for a high-strength steel pipe of API X65 grade or higher according to claim 17, where in the heat treatment for keeping said steel plate at a temperature in the range of 550 to 700° C. for three minutes or longer is accomplished by using two or more induction heating apparatuses provided in series on the same line as rolling equipment and cooling equipment.
- 20. The manufacturing method for a high-strength steel pipe of API X65 grade or higher according to claim 18, where in the heat treatment for keeping said steel plate at a temperature in the range of 550 to 700° C. for three minutes or longer is accomplished by using two or more induction heating apparatuses provided in series on the same line as rolling equipment and cooling equipment.
Priority Claims (2)
Number |
Date |
Country |
Kind |
2001-213145 |
Jul 2001 |
JP |
|
2001-364103 |
Nov 2001 |
JP |
|
Parent Case Info
[0001] This application is a continuation application of International Application PCT/JP02/07102 (not published in English) filed Jul. 12, 2002.
Continuations (1)
|
Number |
Date |
Country |
Parent |
PCT/JP02/07102 |
Jul 2002 |
US |
Child |
10385257 |
Mar 2003 |
US |