Solid expandable tubular members formed from very low carbon steel and method
A very low carbon steel alloy is provided for use in manufacturing tubular members such as oil country tubular goods. The tubular members may be radially expanded from at least twenty percent to forty percent. Sections or joints of casing formed from the steel alloy may be installed within a wellbore and radially expanded during completion of the wellbore.
1. A tubular member comprising:
a welded pipe formed from a very low carbon steel alloy having iron at a concentration of at least ninety-five percent by weight of the steel alloy, chromium at a concentration of less than approximately 0.1% by weight of the steel alloy, and carbon at a concentration of between approximately 0.03% and 0.06% by weight of the steel alloy;
the steel alloy quenched to produce a concentration of martensite of at least ninety percent by volume of the steel alloy;
the steel alloy tempered to produce desired ductility and strength to accommodate radial expansion of the tubular member between approximately twenty percent and forty-five percent;
a pin end and a box end formed on the pipe with a longitudinal bore extending through the pipe from the pin end to the box end;
an external threaded portion formed on the pin end and an internal threaded portion formed within the box end; and
the external threaded portion and the internal threaded portion operable to be releasably engaged with other respective internal and external threaded portions of other tubular members.
2. The tubular member of claim 1 further comprising an inside diameter operable to be radially expanded at least approximately twenty percent to forty-five percent of the original inside diameter.
3. The tubular member of claim 1 wherein the steel alloy further comprises a total concentration of vanadium, niobium and titanium limited to less than approximately 0.15% by weight of the steel alloy.
4. The tubular member of claim 1 further comprising the external threaded portion and the internal threaded portion having matching modified buttress thread forms.
5. A solid, expandable casing string for using in completing a wellbore comprising:
a first tubular member formed from an electric resistance welded pipe;
a second tubular member formed from an electric resistant welded pipe;
the electric resistance pipes formed from a steel alloy (a) having carbon at a concentration of between approximately 0.03% and 0.06% by weight of the steel alloy and (b) tempered to produce desired ductility and strength to accommodate radial expansion of the tubular member between approximately twenty percent and forty-five percent;
the first tubular member having a pin end and a box end with a longitudinal bore extending through the first tubular member between the pin end and the box end;
a first threaded portion formed on the pin end of the first tubular member and a second threaded portion formed in the box end of the first tubular member;
the second tubular member having a pin end and a box end with a longitudinal bore extending through the second tubular member between the pin end and the box end;
a first threaded portion formed on the pin end of each tubular member and a second threaded portion formed in the box end of each tubular member; and
the first threaded portion of the pin end of the first tubular member releasably engaged with the second threaded portion of the box end of the second tubular member.
6. The casing string of claim 5 further comprising:
the steel alloy having low concentrations of vanadium, niobium and titanium; and
the total concentration of vanadium, niobium and titanium less than approximately 0.15% by weight of the steel alloy.
7. A solid, expandable casing string for using in completing a wellbore comprising:
a first tubular member formed from an electric resistance welded pipe;
a second tubular member formed from an electric resistant welded pipe;
the electric resistance welded pipes formed from a steel alloy (a) having carbon at a concentration of between approximately 0.03% and 0.06% by weight of the steel alloy and (b) tempered to produce desired ductility and strength to accommodate radial expansion of the tubular member between approximately twenty percent and forty-five percent;
the first tubular member having a first end and a second end with a longitudinal bore extending through the first tubular member between the first end and the second end;
the second tubular member having a first end and a second end with a longitudinal bore extending through the second tubular member between the first end and the second end; and
the first end of the first tubular member releasably engaged with the second end of the second tubular member.
8. The casing string of claim 7 further wherein the steel alloy further comprises;
low concentrations of vanadium, niobium and titanium; and
the total concentration of vanadium, niobium and titanium less than approximately 0.15% by weight of the steel alloy.
9. A solid, expandable coupling having high ductility satisfactory for completing a wellbore comprising:
a first end and a second end with a longitudinal bore extending through the coupling between the first end and the second end;
the coupling formed from a steel alloy;
the steel alloy (a) having carbon at a concentration of between approximately 0.03% and 0.06% by weight of the steel alloy and (b) tempered to produce desired ductility and strength to accommodate radial expansion of the tubular member between approximately twenty percent and forty-five percent;
a first threaded portion formed within the longitudinal bore of the coupling; and
a second threaded portion formed within the longitudinal bore of the coupling.
10. The coupling of claim 9 wherein the steel alloy further comprises:
low concentrations of vanadium, niobium and titanium; and
the total concentration of vanadium, niobium and titanium less than approximately 0.15% by weight of the steel alloy.