Claims
- 1. A drill bit body comprising a solid structural body having a portion formed of a first composition and a further portion formed of a second composition, said first composition differing from said second composition and said portion being a feature being selected from the group consisting of a core, a blade, and a liner of a cavity extending into said solid structural body for receiving a cutting element therein.
- 2. The drill bit body as in claim 1, wherein said first composition includes a first matrix material as a primary component thereof and said second composition includes a second matrix material as a primary component thereof, said first matrix material differing from said second matrix material.
- 3. The drill bit body as in claim 1, wherein said first composition includes a first matrix material and said second composition includes a plurality of further matrix materials including a second matrix material and a third matrix material, said first matrix material differing from at least said second matrix material.
- 4. The drill bit body as in claim 1, wherein said first composition comprises a first matrix material and at least a first metal additive and said second composition comprises a second matrix material and at least a second metal additive, said first metal additive differing from said second metal additive.
- 5. The drill bit body as in claim 4, wherein each of said first metal additive and said second metal additive comprises one of cobalt, nickel, and iron.
- 6. The drill bit body as in claim 1, wherein said first composition includes a first matrix material and a first metal additive at a first weight percentage therein, and said second composition includes a second matrix material and a second metal additive at a second weight percentage therein, said first weight percentage being different from said second weight percentage.
- 7. The drill bit body as in claim 1, wherein said first composition includes a first matrix material and a second matrix material at a first weight percentage therein, and said second composition includes said first matrix material and said second matrix material at a second weight percentage therein, said first weight percentage being different from said second weight percentage.
- 8. The drill bit body as in claim 1, wherein said first composition includes a first matrix material comprising a first type of tungsten carbide and said second composition includes a second matrix material comprising a second type of tungsten carbide, each of said first type of tungsten carbide and said second type of tungsten carbide selected from the group consisting of carburized tungsten carbide, cast tungsten carbide, macro-crystalline tungsten carbide, crushed sintered tungsten carbide and pelletized sintered tungsten carbide.
- 9. The drill bit body as in claim 1, in which said first composition provides at least a first functional property to said structural body and said second composition provides at least a second functional property to said structural body, said first functional property differing from said second functional property.
- 10. The drill bit body as in claim 9, wherein each of said first functional property and said second functional property is a functional property selected from the group consisting of a desirable degree of braze strength, a desirable degree of erosion resistance, a desirable degree of abrasion resistance, a desirable degree of steel bond strength, a desirable degree of toughness, a desirable degree of hardness, and a desirable degree of transverse rupture strength.
- 11. The drill bit body as in claim 1, wherein said feature is a core comprising an interface region that forms an interface with a metallic blank bonded to said drill bit body.
- 12. The drill bit body as in claim 1, wherein said solid structural body further comprises a further feature formed of a third composition, said third composition differing from each of said first composition and said second composition, and said further feature being selected from the group consisting of a core, a blade, and a liner of a cavity extending into said solid structural body for receiving a cutting element therein.
- 13. The drill bit body as in claim 12, wherein said feature comprises said liner and said further feature is a surface of said structural body adjacent said cavity.
- 14. The drill bit body as in claim 1, wherein said group further includes teeth of said bit body.
- 15. The drill bit body as in claim 1, wherein said first composition comprises a first mixture of more than one type of tungsten carbide and said second composition comprises a second mixture of more than one type of tungsten carbide, each type of tungsten carbide selected from the group consisting of carburized tungsten carbide, cast tungsten carbide, macro-crystalline tungsten carbide, crushed sintered tungsten carbide and pelletized sintered tungsten carbide.
- 16. A method for forming a drill bit body comprising:
providing a mold; and packing said mold with a first matrix powder and a second matrix powder to form a drill bit body having a portion formed of said first matrix powder and a further portion formed of said second matrix powder, said first matrix powder differing from said second matrix powder and said portion being a feature selected from the group consisting of a core, a blade, and a liner of a cavity that extends into said drill bit body.
- 17. The method as in claim 16, wherein each of said first matrix powder and said second matrix powder comprise a matrix material and at least one metal additive.
- 18. The method as in claim 16, further comprising sintering to solidify said drill bit body.
- 19. The method as in claim 18, wherein said sintering converts said first matrix powder to a first composition including a first set of functional properties and said second matrix powder to a second composition including a second set of functional properties being different from said first set of functional properties, each of said first and second sets of functional properties including at least one functional property selected from the group consisting of a desirable degree of braze strength, a desirable degree of erosion resistance, a desirable degree of hardness, a desirable degree of abrasion resistance, a desirable degree of steel bond strength, a desirable degree of toughness and a desirable degree of transverse rupture strength.
- 20. The method as in claim 16, wherein said first matrix powder includes a first matrix material and said second matrix powder includes a second matrix material, said first matrix material differing from said second matrix material.
- 21. The method as in claim 16, wherein said first matrix powder includes a first matrix material and said second matrix powder includes a plurality of further matrix materials including a second matrix material and a third matrix material, said first matrix material differing from said second matrix material.
- 22. The method as in claim 16, in which said first matrix powder includes a first metal additive and said second matrix powder includes a second metal additive, said first metal additive differing from said second metal additive.
- 23. The method as in claim 16, wherein said first matrix powder includes a first type of tungsten carbide and said second matrix powder includes a second type of tungsten carbide, said first type of tungsten carbide differing from said second type of tungsten carbide, each of said first type of tungsten carbide and said second type of tungsten carbide selected from the group consisting of carburized tungsten carbide, cast tungsten carbide, macro-crystalline tungsten carbide, crushed sintered tungsten carbide and pelletized sintered tungsten carbide.
- 24. The method as in claim 16, wherein said first matrix powder includes a first average particle size and said second matrix powder includes a second average particle size being different than said first average particle size.
- 25. The method as in claim 16, wherein said first matrix powder includes a first particle size distribution and said second matrix powder includes a second particle size distribution being different from said first particle size distribution.
- 26. The method as in claim 16, wherein said first matrix powder includes a first mixture of more than one type of tungsten carbide matrix material and said second matrix powder includes a second mixture of more than one type of tungsten carbide matrix material.
- 27. The method as in claim 16, wherein said packing includes at least one of said first matrix powder and said second matrix powder including diamond powder as part thereof.
- 28. The method as in claim 16, wherein said packing further comprises packing said mold with a third matrix powder to produce said drill bit body having a further feature formed of said third matrix powder, said further feature selected from the group consisting of a core, a blade, teeth, and a liner of a cavity that extends into said drill bit body, and said third matrix powder differing from each of said first matrix powder and said second matrix powder.
- 29. The method as in claim 16, wherein said first matrix powder includes a first mixture of more than one matrix material and said second matrix powder includes a second mixture of more than one matrix material.
CROSS-REFERENCE TO RELATED APPLICATION(S)
[0001] This application is related to co-pending U.S. patent application Ser. No. ______, entitled “Improved Bonding of Cutters in Diamond Drill Bits”, filed ______ and Ser. No. ______, entitled “Drill Bit Body with Multiple Binders”, filed ______, the contents of each of which are hereby incorporated by reference.