Claims
- 1. A method of manufacturing a cutting element comprising:
selecting an ultra hard material which is not fully densified; selecting a substrate at least a portion of which has a density that is less than 100% of full density of said at least a portion; placing the ultra hard material over the substrate; and processing the resulting assembly of substrate and ultra-hard material at a sufficient temperature and pressure for full densification and metallurgical joining of the substrate and ultra-hard material, wherein the density is selected for controlling the magnitude of the residual stresses generated on the ultra hard material layer during sintering.
- 2. A method as recited in claim 1 wherein a first portion of the substrate has said density and a second portion of the substrate is fully densified prior to processing.
- 3. A method as recited in claim 2 wherein said substrate first portion extends over the first portion and wherein the ultra hard material layer is placed over the second portion.
- 4. A method as recited in claim 3 wherein the ultra hard material layer is placed over at least part of the second portion.
- 5. A method as recited in claim 2 wherein an outer portion of the substrate has a density less than 100% of full density of said outer portion and an inner portion of the substrate is fully densified.
- 6. A method as recited in claim 1 wherein a first portion of the substrate has a first density and wherein a second portion of the substrate has a second density, wherein the first density is different from the second density.
- 7. A method as recited in claim 1 wherein the entire substrate has a density less than 100% of full density of the substrate.
- 8. A method as recited in claim 1 wherein said at least a portion has a density in the range of about 70% to about 90% of full density of said portion.
- 9. A method as recited in claim 1 wherein said at least a portion has a density in the range of about 40% to about 99% of full density of said portion.
- 10. A method as recited in claim 9 wherein said at least a portion has a density in the range of about 75% to about 99% of full density of said portion.
- 11. A method as recited in claim 1 wherein the substrate prior to sintering has a porosity of in the range of about 1% to about 30%.
- 12. A method as recited in claim 1 further comprising forming a non-uniform face on the substrate material, wherein the ultra hard material is placed over the non-uniform face.
- 13. A method for controlling sintering induced stresses generated on an ultra hard material layer of a cutting element, the method comprising:
selecting an ultra hard material which is not fully densified; selecting a substrate at least a portion of which has a density less than 100% of full density of said portion for controlling the magnitude of the sintering-induced stresses generated; and sintering the ultra hard material and the substrate to form the cutting element.
- 14. A method as recited in claim 13 wherein the substrate constraints shrinkage of the ultra hard material layer during sintering, and wherein the amount of constraint provided by the substrate is a function of the density of the substrate prior to sintering.
- 15. A method as recited in claim 13 wherein a first portion of the substrate has a first density less than 100% of full density and a second portion of the substrate is fully densified prior to processing.
- 16. A method as recited in claim 13 wherein a first portion of the substrate has a first density and a second portion of the substrate has a second density different from the first density.
- 17. A method as recited in claim 13 wherein the entire substrate has a density less than 100% of full density.
- 18. A method as recited in claim 13 wherein said at least a portion has a density in the range of about 70% to about 90% of full density of said portion.
- 19. A method as recited in claim 13 wherein said at least a portion has a density in the range of about 40% to about 99% of full density of said portion.
- 20. A method as recited in claim 19 wherein said at least a portion has a density in the range of about 75% to about 99% of full density of said portion.
- 21. A method as recited in claim 13 wherein said at least a portion has a density in the range of about 40% to about 70% of full density of said portion.
- 22. A method as recited in claim 13 wherein the substrate prior to sintering has a porosity of in the range of about 1% to about 30%.
- 23. A method for controlling sintering induced stresses generated on the an ultra hard material layer of a cutting element, the method comprising:
selecting an ultra hard material which is not fully densified; controlling the constraint by selecting a substrate at least a portion of which has a density less than 100% of full density; and sintering the ultra hard material and the substrate to form the cutting element.
- 24. A method as recited in claim 23 wherein controlling the constraint comprises reducing the constraint by reducing the density.
- 25. A method of manufacturing a cutting element comprising:
selecting an ultra hard material which is not fully densified; selecting a substrate having a first portion that has a first density less than 100% of full density, and a second portion that has a second density that is different from the first density; placing the ultra hard material over the substrate material; and processing the resulting assembly of substrate and ultra-hard materials at a sufficient temperature and pressure for full densification and metallurgical joining of the substrate and ultra-hard material.
- 26. A method as recited in claim 25 wherein the first density is in the range of about 70% to about 90% of full density.
- 27. A method as recited in claim 25 wherein the first density is in the range of about 40% to about 99% of full density.
- 28. A method as recited in claim 27. wherein the first density is in the range of about 75% to about 99% of full density.
- 29. A method as recited in claim 25 wherein the first density is in the range of about 40% to about 70% of full density.
- 30. A method as recited in claim 25 wherein the substrate prior to sintering has a porosity of in the range of about 1% to about 30%.
- 31. A method as recited in claim 25 further comprising forming a non-uniform face on the substrate material, wherein the ultra hard material is placed over the non-uniform face.
- 32. A method as recited in claim 25 wherein the second degree of density is 100% of full density.
- 33. A method as recited in claim 25 wherein first and second densities are selected for controlling the magnitude of the residual stresses generated on the ultra hard material layer during sintering.
CROSS REFERENCE TO RELATED APPLICATION
[0001] This application is based upon and claims priority on U.S. Provisional Application No. 60/411,942 filed on Sep. 18, 2002, the contents of which are fully incorporated herein by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60411942 |
Sep 2002 |
US |