Claims
- 1. An earth-boring bit comprising:
a cutting element formed of a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
- 2. A rock bit, comprising:
a bit body, a rolling cone rotatably mounted on the bit body, the rolling cone having a cone surface with an insert press-fit therein, and; the insert formed of a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
- 3. A cutting element, comprising:
a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
- 4. A method of boring an earth formation, comprising:
using an earth-boring bit having a cutting element formed of a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
- 5. A method of boring an earth formation, comprising:
using a rock bit having a rolling cone with an insert press-fit therein, the insert being formed of a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
- 6. A method of boring an earth formation, comprising:
using an insert as a cutting element, the insert being formed of a composition including tungsten carbide and cobalt, the composition having a thermal conductivity exceeding a value Kmin as determined by the following equation: Kmin=0.00102X2−0.03076X+0.5464, where X is a cobalt content by weight, and Kmin is in the units of cal/cm·s·° K.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the benefit of priority from U.S. Provisional Application No. 60/072,666, entitled, “Thermal Fatigue and Shock Resistant Material for Earth-Boring Bits” filed Jan. 27, 1998.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60072666 |
Jan 1998 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
09231748 |
Jan 1999 |
US |
Child |
09800193 |
Mar 2001 |
US |