Claims
- 1. A composite construction comprising:
a structure of two or more different material phases that are woven together; wherein at least one of the material phases comprises a hard material selected from the group consisting of: polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table; and mixtures thereof.
- 2. The composite construction as recited in claim 1 wherein another of the material phases comprises a material having a degree of ductility that is higher than that of the material phase formed from a hard material.
- 3. The composite construction as recited in claim 1 wherein one of the material phases is formed from a material selected from the group consisting of cermets, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof.
- 4. The composite construction as recited in claim 1 wherein the structure comprises two material phases, wherein a first material phase is selected from the group consisting of carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table, and a second material phase is selected from the group consisting of Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof.
- 5. The composite construction as recited in claim 4 wherein the first material phase is WC—Co, and the second material phase is Co.
- 6. The composite construction as recited in claim 1 wherein the structure comprises two material phases, wherein a first material phase is selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride, and mixtures thereof, and a second material phase is a cermet material.
- 7. The composite construction as recited in claim 6 wherein the first material phase is polycrystalline diamond and the second material phase is WC—Co.
- 8. The composite construction as recited in claim 1 wherein the material phases are each in the form of a substantially continuous band, and wherein the structure comprises a number of the bands that are woven together with one another.
- 9. The composite construction as recited in claim 8 wherein the structure comprises-sections where the first and second material bands are layered over one another.
- 10. The composite construction as recited in claim 1 wherein at least one of the material phases comprises more than one type of material.
- 11. The composite construction as recited in claim 1 wherein two of the material phases comprise polycrystalline diamond.
- 12. A composite construction comprising:
a structure of two or more material phases that are woven together; wherein the material phases are in the form of a substantially continuous band formed from materials selected from the group consisting of: polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, carbonitrides from groups IVA, VA, and VIA of the Periodic Table; cermets, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta; and mixtures thereof.
- 13. The composite construction as recited in claim 12 comprising a first material phase and a second material phase, wherein the second material phase is formed from a material having a degree of ductility that is higher than the material selected to form the first material phase.
- 14. The composite construction as recited in claim 12 wherein the ordered structure comprises an arrangement of a first or second material phase that is surrounded on four sides by the other of the first or second material phases.
- 15. The composite construction as recited in claim 12 wherein the structure comprises sections where the material phase bands are layered over one another.
- 16. The composite construction as recited in claim 12 wherein a first material phase is WC—Co, and a second material phase is Co.
- 17. The composite construction as recited in claim 12 wherein a first material phase is selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride, and mixtures thereof, and a second material phase is a cermet material.
- 18. The composite construction as recited in claim 17 wherein the first material phase is polycrystalline diamond and the second material phase is WC—Co.
- 19. The composite construction as recited in claim 1 wherein a first material phase is polycrystalline diamond, and a second material phase is polycrystalline diamond.
- 20. The composite construction as recited in claim 12 wherein at least one of material phases is a multi-layer construction.
- 21. The composite construction as recited in claim 12 wherein at least one of the material phases is formed from more than one material.
- 22. The composite construction as recited in claim 12 wherein at least one of the material phases has a structure comprising two or more material regions.
- 23. A composite construction comprising:
an ordered structure of two or more material phases; wherein a first material phase is in the form of a substantially continuous band comprising polycrystalline diamond; and wherein the second material phase is in the form of a substantially continuous band formed from a material selected from the group consisting of cermets, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof, the first and second material phases being interwoven with one another to provide a repeating arrangement of first and second material phases.
- 24. A composite construction comprising:
an ordered structure of two or more material phases arranged together in a packed configuration; wherein the material phases can be formed from the same or different materials selected from the group consisting of: polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table; and mixtures thereof; cermets, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof; and wherein the ordered structure is positioned along a working surface of the composite construction.
- 25. The composite construction as recited in claim 24 wherein the structure comprises a first material phase formed from a hard material, and a second material phase formed from a material having a degree of ductility that is higher than the hard material selected to form the first material phase.
- 26. The composite construction as recited in claim 25 wherein the first material phase comprises polycrystalline diamond, and the second material phase comprises tungsten carbide.
- 27. The composite construction as recited in claim 25 wherein the first and second material phases each comprise polycrystalline diamond.
- 28. The composite construction as recited in claim 24 wherein at least one of material phases is a multi-layer construction.
- 29. The composite construction as recited in claim 24 wherein at least one of the material phases is formed from more than one material.
- 30. The composite construction as recited in claim 24 wherein at least one of the material phases has a structure comprising two or more material regions.
- 31. A method for making a composite construction having an ordered structure comprising the steps of:
forming a multi-layer laminate film comprising one or more different materials; cutting one or more slices from the multi-layer laminate film; combining the one or more slices with one or more slices taken from another multi-layer film to form a multi-layer construction with multiple layers of materials forming the films positioned along a construction surface; sintering the multi-layer construction to form the composite construction having an ordered structure of the multiple layers of materials positioned along a working surface.
- 32. The method as recited in claim 31 wherein the multi-layer laminate film comprises:
a hard material selected from the group consisting of: polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table; and mixtures thereof; and a relatively more ductile materials selected from the group consisting of cermets, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof.
- 33. The method as recited in claim 31 wherein the multi-layer laminate film includes a material layer comprising polycrystalline diamond, and a material layer comprising carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table.
- 34. The method as recited in claim 31 wherein the multi-layer laminate film includes a material layer having a structure of two or more material phases.
- 35. The method as recited in claim 31 wherein during the step of combining, the slices of multi-layer films are arranged so that material layers within the films are perpendicular to one another.
- 36. A roller cone drill bit comprising:
a body having a number of legs that extend therefrom; cutting cones rotatably disposed on an end of each leg; a plurality of cutting inserts disposed in the cutting cones, therein at least a portion of the cutting inserts are formed from a composite construction having a structure of two or more material phases that are woven together; wherein the material phases include materials selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof.
- 37. The drill bit as recited in claim 36 wherein the composite construction structure comprises a first material phase formed from WC—Co, and a second material phase formed from Co.
- 38. The drill bit as recited in claim 36 wherein the structure comprises two material phases, wherein a first material phase is selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride, and mixtures thereof, and a second material phase is a cermet material.
- 39. The drill bit as recited in claim 38 wherein the first material phase is polycrystalline diamond and the second material phase is WC—Co.
- 40. A drag drill bit comprising:
a body having a head and having a number of blades extending away from a head surface, the blades being adapted to engage a subterranean formation during drilling; a plurality of shear cutters disposed in the blades to contact the subterranean formation during drilling, each shear cutter comprising a substrate and a layer of cutting material disposed thereof, the cutting material comprising a composite construction having a structure of two or more material phases that are woven together; wherein the material phases include materials selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride; carbides, borides, nitrides, and carbonitrides from groups IVA, VA, and VIA of the Periodic Table, Co, Ni, Fe, W, Mo, Cu, Al, Nb, Ti, Ta, and mixtures thereof.
- 41. The drill bit as recited in claim 40 wherein the composite construction structure comprises a first material phase formed from WC—Co, and a second material phase formed from Co.
- 42. The drill bit as recited in claim 40 wherein the structure comprises two material phases, wherein a first material phase is selected from the group consisting of polycrystalline diamond, polycrystalline cubic boron nitride, and mixtures thereof, and a second material phase is a cermet material.
- 43. The drill bit as recited in claim 42 wherein the first material phase is polycrystalline diamond and the second material phase is WC—Co.
RELATION TO COPENDING PATENT APPLICATIONS
[0001] This patent application is a continuation-in-part of U.S. patent application Ser. No. 08/903,668 filed on Jul. 31, 1997, which application is incorporated herein by reference.
Divisions (1)
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Number |
Date |
Country |
Parent |
09571636 |
May 2000 |
US |
Child |
10353315 |
Jan 2003 |
US |
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
08903668 |
Jul 1997 |
US |
Child |
09571636 |
May 2000 |
US |