Claims
- 1. A process for forming a cutting surface on a cutting tool having a body surface, the process comprising the steps of:
- forming at least one groove on the body surface, the groove extending from the cutting end toward the base end;
- forming a rope from a sheet of commingled ultra hard particles and a binder;
- placing the rope in the groove forming a body and rope assembly; and
- bonding the rope in the groove for forming a cutting surface of polycrystalline diamond-like material in the groove.
- 2. A process as recited in claim 1 further comprising the step of forming a flute along the leading edge of the cutting surface of diamond-like material for forming a cutting edge along the leading edge of the diamond like material.
- 3. A process as recited in claim 1 wherein the forming at least one groove step further comprises the step of forming the body surface from cemented tungsten carbide.
- 4. A process as recited in claim 1 wherein the forming a rope step comprises the steps of:
- forming a sheet of high shear compaction diamond-like material by roller pressing diamond-like material with a binder;
- slitting the sheet into strips;
- rolling each strip along its longitudinal axis through rollers to form a rope.
- 5. A process as recited in claim 4 wherein the forming a sheet step comprises forming a sheet of high shear compaction cubic boron nitride.
- 6. A process as recited in claim 1 wherein the forming a rope step comprises the steps of:
- forming a tape of diamond-like material by a process selected from the group consisting of doctor blade forming and extruding;
- slitting the tape into strips;
- rolling each strip along its longitudinal axis through rollers to form a rope.
- 7. A process as recited in claim 6 wherein the forming a tape step comprises forming a tape of cubic boron nitride.
- 8. A process as recited in claim 1 wherein the groove is concave.
- 9. A process as recited in claim 1 wherein the groove has a wavy surface.
- 10. A process as recited in claim 1 wherein the forming a rope step comprises forming a rope having a surface complementary to the groove.
- 11. A process as recited in claim 10 wherein the step of forming a rope comprises the step of slitting a sheet of commingled ultra hard material and binder into strips and rolling each strip along its longitudinal axis between a flat and a grooved roller.
- 12. A process as recited in claim 1 wherein the bonding step comprises the steps of:
- volatilizing the binder by heating the body and rope assembly;
- pressing the body and rope assembly at pressures where diamond is thermodynamically stable; and
- heating the body and rope assembly until polycrystalline diamond is formed whereby the polycrystalline diamond bonds to the cutter body.
- 13. A process as recited in claim 12 wherein the volatilizing step comprises heating the body and rope assembly in a vacuum.
- 14. A process as recited in claim 13 wherein the vacuum is not greater than 10 torr and not less than 10.sup.-5 torr.
- 15. A process as recited in claim 12 wherein the volatilizing step comprises heating the body and rope assembly in an inert gas or reducing gas.
- 16. A process as recited in claim 15 wherein the volatilizing step comprises heating the body and rope assembly in a gas selected from the group consisting of ammonia and argon.
- 17. A process as recited in claim 12 wherein the forming the rope step comprises forming the rope from diamond or cubic boron nitride material and wherein the volatilizing step comprises heating the assembly at temperature of at least 300.degree. C.
- 18. A process as recited in claim 12 wherein the step of forming the rope comprises forming the rope from a material selected from the group consisting of diamond and cubic boron nitride and wherein the step of volatilizing comprises heating the assembly at temperature of at least 950.degree. C.
- 19. A process as recited in claim 12 wherein the pressing step comprises pressing the body and rope assembly at pressures of at least 35 kilobars.
- 20. A process as recited in claim 19 wherein the pressing step comprises pressing the body and rope assembly at a pressure of approximately 65 kilobars.
- 21. A process as recited in claim 12 further comprising, prior to the step of pressing, the step of heating the body and rope assembly to a temperature of at least equal to the temperature to which the assembly was heated during the volatilizing step.
- 22. A process as recited in claim 21 wherein the step of heating occurring prior to the step of pressing comprises heating the body and rope assembly to a temperature of at least 950.degree. C.
- 23. A process for forming a cutting surface on a cutting tool having a body, the process comprising the steps of:
- forming at least one groove having a bottom on the cutting tool body;
- forming a rope of diamond-like material, the rope having a surface complementary to the bottom of the groove;
- placing the rope within the groove, mating the complementary surface of the rope to the groove bottom; and
- sintering rope within the groove, forming a cutting surface of polycrystalline diamond-like material in the groove.
- 24. A process as recited in claim 23 wherein the step of forming a rope, comprises the step of forming a rope from high shear compaction diamond-like material.
- 25. A process as recited in claim 23 wherein the step of forming a rope comprises the step of forming a rope from a tape of diamond-like material, the tape being formed by a process selected from the group consisting of doctor blade forming and extruding.
- 26. A process as recited in claim 23 wherein the placing step comprises pressing the rope in the groove.
- 27. A process as recited in claim 23 further comprising the step of forming a flute along a leading edge of the surface of diamond-like material for forming a cutting edge along the leading edge of the diamond-like material.
- 28. A process for forming a cutting surface on a cutting tool having a body surface, the process comprising the steps of:
- forming at least one groove on the body surface, the groove extending from the cutting end toward the base end;
- forming a rope from a sheet of commingled ultra hard particles and a binder wherein the ultra hard material particles are selected from the group consisting of diamond and cubic boron nitride;
- placing the rope in the groove forming a body and rope assembly;
- volatilizing the binder by heating the body and rope assembly to a temperature of approximately 1025.degree. C.;
- pressing the body and rope assembly at pressures where diamond is thermodynamically stable; and
- heating the body and rope assembly until polycrystalline diamond is formed whereby the polycrystalline diamond bonds to the cutter body.
- 29. A process for forming a cutting surface on a cutting tool having a body outer surface, the process comprising the steps of:
- forming at least one concave groove on the body outer surface;
- draping the groove with a strip of diamond-like material shaped to a shape complementary to the groove; and
- bonding the strip in the groove in a high pressure-high temperature press for forming a cutting surface of polycrystalline diamond-like material in the groove.
- 30. A process as recited in claim 29 wherein the draping step comprises the step of draping the groove with a strip of high shear compaction diamond-like material.
- 31. A process as recited in claim 29 wherein the draping step comprises the step of draping the groove with a strip of tape diamond-like material, the tape being formed by a process selected from the group consisting of doctor blade forming and extruding.
- 32. A process as recited in claim 29 wherein the draping step comprises the step of pressing the strip into the groove.
- 33. A process as recited in claim 29 further comprising the step of forming a flute along a leading edge of the cutting surface of diamond-like material for forming a cutting edge along the leading edge of the diamond-like material.
- 34. A process for forming a cutting surface on a cutting tool having a body outer surface, the process comprising the steps of:
- forming at least one groove on the body outer surface;
- shaping a strip of diamond-like material into a shape complementary to the groove;
- pressing the shaped strip into the groove; and
- bonding the strip in the groove in a high pressure-high temperature press for forming a cutting surface of polycrystalline diamond-like material in the groove.
- 35. A process for forming a rotary cutting tool comprising the steps of:
- forming a cutting tool body of hard material;
- forming at least one groove having compound curvature on the body surface;
- forming a strip from a sheet of commingled ultra hard particles and a binder, the strip having a surface complementary to the groove;
- placing the strip in the groove forming a body and strip assembly; and
- bonding the strip in the groove for forming polycrystalline diamond-like material in the groove.
- 36. A process as recited in claim 35 wherein the forming the body step comprises the step of forming the body from cemented tungsten carbide.
- 37. A process as recited in claim 35 wherein the forming a strip step comprises the steps of:
- forming a sheet of high shear compaction diamond-like material by roller pressing diamond-like material with an organic binder; and
- slitting the sheet into strips.
- 38. A process as recited in claim 35 wherein the bonding step comprises the steps of:
- volatilizing the binder by heating the body and strip assembly;
- pressing the body and strip assembly at pressures where diamond is thermodynamically stable; and
- heating the body and strip assembly until polycrystalline diamond is formed whereby the polycrystalline diamond bonds in the groove in the cutter body.
- 39. A process for forming a rotary cutting tool comprising the steps of:
- forming a cutting tool body of hard material;
- forming at least one groove having compound curvature on the outer surface of the body;
- forming a strip from high shear compaction diamond-like material comprising a binder, the strip having a surface complementary to the groove;
- placing the strip within the groove; and
- sintering the strip within the groove, forming polycrystalline diamond-like material in the groove.
- 40. A process as recited in claim 39 wherein the placing step comprises pressing the strip in the groove.
- 41. A process for forming a cutting surface on a tool having a body, the process comprising the steps of:
- slitting a sheet of diamond-like material for forming a narrow strip;
- rolling the strip for forming a new cross sectional shape; and
- placing the rolled strip in a complementary groove in the body; and
- bonding the rolled strip in the groove in a high pressure-high temperature press for forming a cutting surface of a polycrystalline diamond-like material in the groove.
- 42. A process as recited in claim 41 wherein the step of slitting comprises the step of slitting a sheet of high shear compaction diamond like material.
- 43. A process as recited in claim 41 wherein the step of slitting comprises the step of slitting a tape of diamond-like material, the tape being formed by a process selected from the group consisting of doctor blade forming and extruding.
- 44. A process for forming a rotary cutting tool comprising the steps of:
- forming a cutting tool body of hard material;
- forming at least one groove on the body surface;
- forming a sheet of high shear compaction ultra hard material having rounded particles by roller pressing ultra hard material with an organic binder;
- slitting the sheet into strips;
- placing a strip in the groove forming a body and strip assembly; and
- bonding the strip in the groove in a high pressure-high temperature press for forming polycrystalline ultra hard material in the groove.
- 45. A process as recited in claim 44 further comprising the step of shaping the strip to be placed in the groove into a shape complementary to the groove.
Parent Case Info
This is a continuation-in-part of application Ser. No. 08/568,276, filed Dec. 6, 1995, now U.S. Pat. No. 5,766,394, which is based on Provisional Application No. 60/003,466, filed Sep. 8, 1995.
US Referenced Citations (26)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1212681 |
Nov 1970 |
GBX |
Non-Patent Literature Citations (4)
Entry |
Ragan Technologies Incorporated, High Shear Compaxtion Technology; 14 pages. |
Ragan Technologies Inc. Presents . . . ZST . . . LTCC; 9 pages. |
A New Hardfacing Process, Dustoor,et al, Imperial Clevite Inc., 1982 National Powder Metallurgy Conference, Montreal, Can. May 24-27; Progress in Powder Metallurgy, vol. 38, pp. 1-16. |
Air Products and Chemicals, Inc.--QPAC Binders, 12 pages; Laboratory Report, The Role of Slip Additives in Tape-Casting Technology, vol. 71, #10, Oct. 1992. |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
568276 |
Dec 1995 |
|