Claims
- 1. A rotary cone bit comprising:
a bit body having at least one leg extending therefrom; a cone rotatably disposed on the leg, the cone comprising a plurality of cutting elements projecting outwardly therefrom; a functionally-engineered material disposed over a surface of one or both of the cone and cutting element to form a wear resistant surface thereon having a hardness that is different than that of the underlying structure, the wear resistant surface being formed by the process of:
forming a conformable material mixture by combining one or more powders selected from the group consisting of cermets, carbides, borides, nitrides, carbonitrides, refractory metals, and combinations thereof, with an applying agent; conforming and applying the conformable material mixture onto the surface of the cone and cutting element; and consolidating and sintering the applied material mixture to form the wear resistant surface.
- 2. The bit as recited in claim 1 wherein before the step of conforming and applying, the conformable material mixture is preformed into a green-state part that is shaped to complement the surface of one or both of the cone and cutting element, and the green-state part is placed over the surface of one or both of the cone and the cutting element.
- 3. The bit as recited in claim 1 comprising at least one intermediate material layer interposed between the underlaying structure and the wear resistant surface.
- 4. The bits as recited in claim 3 wherein the intermediate material layer is formed prior to the wear resistant layer by the process of:
forming a conformable material mixture by combining one or more powders selected from the group consisting of cermets, carbides, borides, nitrides, carbonitrides, refractory metals, Co, Fe, Ni, and combinations thereof, with an applying agent; and conforming and applying the conformable material mixture onto the underlaying surface of the one or both of the cone and cutting element.
- 5. The bit as recited in claim 4 wherein the intermediate material layer has a hardness that is different from that of both the underlying cutting element and the wear resistant surface.
- 6. The bit as recited in claim 1 wherein the wear resistant surface has a material microstructure comprising:
a first phase of grains that are selected from the group of carbides, borides, nitrides, and carbonitrides of W, Ti, Mo, Nb, V, Hf, Ta, and Cr refractory metals; and a second phase of a binder material selected from the group consisting of Co, Ni, Fe, and alloys thereof.
- 7. A rotary cone rock bit comprising:
a bit body having at least one leg extending therefrom; a cone rotatably disposed on the leg, the cone comprising a plurality of cutting inserts projecting outwardly therefrom, wherein the cutting inserts comprise a cermet material selected from the group consisting of refractory metal carbides, nitrides, borides, carbonitrides and mixtures thereof; a functionally-engineered material disposed over an interface surface of at least one cutting insert to form a wear resistant surface thereon having a hardness that is different than that of the underlying cutting element, the wear resistant surface being formed by the process of:
forming a conformable material mixture by combining one or more powders selected from the group consisting of cermets, carbides, borides, nitrides, carbonitrides, refractory metals, and combinations thereof, with a polymer binder material to provide a conformable material mixture in the form of a slurry; conforming and applying a coating of the conformable material mixture onto the interface surface of the cutting insert, wherein during such applying step the material mixture readily conforms to the interface surface; and consolidating and sintering the material mixture to form the wear resistant surface.
- 8. A method for forming a wear resistant surface onto a surface of a rotary cone rock bit comprising the steps of:
forming a conformable material mixture by combining one or more powders selected from the group consisting of cermets, carbides, borides, nitrides, carbonitrides, refractory metals, and combinations thereof, with an applying agent; and conforming and applying the conformable material mixture onto the surface; and consolidating and sintering the applied conformable material mixture to form the wear resistant surface.
- 9. The method as recited in claim 8 wherein during the step of conforming and applying, the material mixture is in the form of a slurry that is applied in the form of a coating onto the rock bit surface.
- 10. The method as recited in claim 8 wherein prior to the step of applying, the material mixture is preformed into a green-state part that is configured to fit over the rock bit surface and, during the step of conforming and applying, the part is placed over the rock bit surface.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of U.S. patent application Ser. No. 09/846,944, filed on May 1, 2001, which application claimed the priority of U.S. Provisional Application No. 60/200,851, filed on May 1, 2000.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60200851 |
May 2000 |
US |
Continuations (1)
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Number |
Date |
Country |
| Parent |
09846944 |
May 2001 |
US |
| Child |
10454374 |
Jun 2003 |
US |