Claims
- 1. A sintered cubic boron nitride (cBN) compact for use in a tool, which comprises:
(a) between about 60 and 80 vol-% cBN having a volumetric mean particle size of between about 3 to 6 μm; (b) between about 40 and 20 vol-% of a ceramic binder phase, of which
(i) between about 20 and 60 vol-% of one or more of carbides, nitrides, or borides of a Group IVB or VIB metals; (ii) between about 40 and 80 vol-% of one or more of carbides, nitrides, borides, or oxides of aluminum, (c) between about 3 and 15 wt-% tungsten.
- 2. The sintered cBN compact of claim 1, wherein the ceramic binder phase (b)(i) predominantly is titanium carbide.
- 3. The sintered cBN compact of claim 1, where the tungsten content is between about 3 and 8 wt-%.
- 4. The sintered cBN compact of claim 1, wherein said ceramic binder phase includes TiB2, which TiB2 is detectable by XRD.
- 5. The sintered cBN compact of claim 4, which contains WB, wherein the XRD Intensity Ratio of the [101] TiB2 peak to the [110] WB peak is less than about 0.4.
- 6. Process for making a sintered cubic boron nitride (cBN) compact for use in a tool, which comprises subjecting to high pressure and high temperature (HP/HT) conditions a mixture of:
(a) between about 60 and 80 vol-% cBN having a volumetric mean particle size of between about 3 to 6 μm; (b) between about 40 and 20 vol-% of a ceramic binder phase, of which
(i) between about 20 and 60 vol-% of one or more of carbides, nitrides, or borides of a Group IVB or VIB metals; (ii) between about 40 and 80 vol-% of one or more of carbides, nitrides, borides, or oxides of aluminum, (c) between about 3 and 15 wt-% tungsten.
- 7. The process of claim 6, wherein said HP/HT conditions include a pressure of between about 45 and 50 kbars, and a temperature of between about 1400° C. for a time ranging from between about 30 and 40 minutes.
- 8. The process of claim 1, wherein the ceramic binder phase (b)(i) predominantly is titanium carbide.
- 9. The process of claim 1, where the tungsten content is between about 3 and 8 wt-%.
- 10. The process of claim 1, wherein said ceramic binder phase includes TiB2, which TiB2 is detectable by XRD.
- 11. The process of claim 10, which contains WB, wherein the XRD Intensity Ratio of the [101] TiB2 peak to the [110] WB peak is less than about 0.4.
- 12. Method for a machining chemically reactive material, which comprises:
contacting said material with a sintered cubic boron nitride (cBN) compact for removing at least a portion of said material, said cBN compact comprising:
(a) between about 60 and 80 vol-% cBN having a volumetric mean particle size of between about 3 to 6 μm; (b) between about 40 and 20 vol-% of a ceramic binder phase, of which
(i) between about 20 and 60 vol-% of one or more of carbides, nitrides, or borides of a Group IVB or VIB metals; (ii) between about 40 and 80 vol-% of one or more of carbides, nitrides, borides, or oxides of aluminum, (c) between about 3 and 15 wt-% tungsten.
- 13. The method of claim 12, wherein said chemically reactive material comprises a ferrous workpiece.
- 14. The method of claim 1, wherein the ceramic binder phase (b)(i) predominantly is titanium carbide.
- 15. The method of claim 1, where the tungsten content is between about 3 and 8 wt-%.
- 16. The method of claim 1, wherein said ceramic binder phase includes TiB2, which TiB2 is detectable by XRD.
- 17. The method of claim 16, which contains WB, wherein the XRD Intensity Ratio of the [101] TiB2 peak to the [110] WB peak is less than about 0.4.
- 18. An article in the form of a cutting tool, a drill bit, or a dressing tool comprising the cBN compact of claim 1.
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority on U.S. Provisional Application Serial No. 60/391,707, filed on Jun. 26, 2002.
Provisional Applications (1)
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Number |
Date |
Country |
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60391707 |
Jun 2002 |
US |