Claims
- 1. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (a) a primary layer comprising a TiCN layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said primary layer is produced so that tensile residual stresses therein are not more than 30 Kg/mm.sup.2 ; and
- wherein said layers (a)-(c) are deposited by chemical vapor deposition.
- 2. A coated hard alloy cutting tool as claimed in claim 1, wherein said substrate is substantially free of free carbon particles.
- 3. A coated hard alloy cutting tool as claimed in claim 1, wherein a surface region bounded by a distance of 100 .mu.m to a distance of 400 .mu.m from said external surface is substantially free of free carbon particles, while free carbon particles are present in a region located beyond about 400 .mu.m from said external surface of said substrate.
- 4. A coated hard alloy cutting tool as claimed in claim 1, wherein said substrate is provided with rake surfaces and flank surfaces, wherein the tensile residual stresses in said primary layer on said rake surfaces are not greater than tensile residual stresses in said primary layer on said flank surfaces.
- 5. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (a) a primary layer comprising a TiCN layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said substrate is provided with rake surfaces and flank surfaces;
- wherein said primary layer on said rake surfaces is treated to produce compressive residual stresses therein of not more than 20 Kg/mm.sup.2 ;
- wherein said primary layer on said flank surfaces is produced so that tensile residual stresses therein are not more than 30 Kg/mm.sup.2 ; and
- wherein said layers (a)-(c) are deposited by chemical vapor deposition.
- 6. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- a least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (d) a first intermediate layer comprising a TiN layer;
- (a) a primary layer comprising a TiCN layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer
- selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said primary layer is produced so that tensile residual stresses therein are not more than 30 kg/mm.sup.2 ; and
- wherein said layers (a)-(d) are deposited by chemical vapor deposition.
- 7. A coated hard alloy cutting tool as claimed in claim 6, wherein the thickness of said first intermediate layer is not more than 1 .mu.m.
- 8. A coated hard alloy cutting tool as claimed in claim 6, wherein said substrate is substantially free of free carbon particles.
- 9. A coated hard alloy cutting tool as claimed in claim 6, wherein a surface region bounded by a distance of 100 .mu.m to a distance of 400 .mu.m from said external surface is substantially free of free carbon particles, while free carbon particles are present in a region located beyond about 400 .mu.m from said external surface of said substrate.
- 10. A coated hard alloy cutting tool as claimed in claim 6, wherein said substrate is provided with rake surfaces and flank surfaces, wherein the tensile residual stresses in said primary layer on said rake surfaces are not greater than tensile residual stresses in said primary layer on said flank surfaces.
- 11. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (d) a first intermediate layer comprising a TiN layer;
- (a) a primary layer comprising a TiCN layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said substrate is provided with rake surfaces and flank surfaces;
- wherein said primary layer on said rake surfaces is treated to produce compressive residual stresses therein of not more than 20 Kg/mm.sup.2 ;
- wherein said primary layer on said flank surfaces is produced so that tensile residual stresses therein are not more than 30 Kg/mm.sup.2 ; and
- wherein said layers (a)-(d) are deposited by chemical vapor deposition.
- 12. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (a) a primary layer comprising a TiCN layer;
- (e) a second intermediate layer comprising at least one layer selected from the group comprising a TiC layer, a TiCO layer and a TiCNO layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer; wherein said primary layer is produced so that tensile residual stresses therein are not more than 30 kg/mm.sup.2 ; and
- wherein said layers (a)-(c) and (e) are deposited by chemical vapor deposition.
- 13. A coated hard alloy cutting tool as claimed in claim 12, wherein the total thickness for said second intermediate layer of a TiCO layer and a TiCNO layer is not more than 1 .mu.m.
- 14. A coated hard alloy cutting tool as claimed in claim 12, wherein said substrate is substantially free of free carbon particles.
- 15. A coated hard alloy cutting tool as claimed in claim 12, wherein a surface region bounded by a distance of 100 .mu.m to a distance of 400 .mu.m from said external surface is substantially free of free carbon particles, said free carbon particles being present in a region of said substrate located beyond about 400 .mu.m from said external surface of said substrate.
- 16. A coated hard alloy cutting tool as claimed in claim 12, wherein said substrate is provided with rake surfaces and flank surfaces, wherein the tensile residual stresses in said primary layer on said rake surfaces are not greater than tensile residual stresses in said primary layer on said flank surfaces.
- 17. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (a) a primary layer comprising a TiCN layer;
- (e) a second intermediate layer comprising at least one layer selected from the group comprising a TiC layer, a TiCO layer and a TiCNO layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said substrate is provided with rake surfaces and flank surfaces;
- wherein said primary layer on said rake surfaces is treated to produce compressive residual stresses therein of not more than 20 Kg/mm.sup.2 ;
- wherein said primary layer on said flank surfaces is produced so that tensile residual stresses therein are not more than 30 kg/mm.sup.2 ; and
- wherein said layers (a)-(c) and (e) are deposited by chemical vapor deposition.
- 18. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (d) a first intermediate layer comprising a TiN layer;
- (a) a primary layer comprising a TiCN layer;
- (e) a second intermediate layer comprising at least one layer selected from the group comprising a TiC layer, a TiCO layer and a TiCNO layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer; wherein said primary layer is produced so that tensile
- residual stresses therein are not more than 30 Kg/mm.sup.2 ; and
- wherein said layers (a)-(e) are deposited by chemical vapor deposition.
- 19. A coated hard alloy cutting tool as claimed in claim 18, wherein the thickness of said first intermediate layer of TiN layer is not more than 1 .mu.m.
- 20. A coated hard alloy cutting tool as claimed in claim 18, wherein the total thickness of said second intermediate layer of a TiCO layer or a TiCNO layer is not more than 1 .mu.m.
- 21. A coated hard alloy cutting tool as claimed in claim 18, wherein said substrate is substantially free of free carbon particles.
- 22. A coated hard alloy cutting tool as claimed in claim 18, wherein a surface region bounded by a distance of 100 .mu.m to a distance of 400 .mu.m from said external surface is substantially free of free carbon particles, said free carbon particles being present in a region located beyond about 400 .mu.m from said external surface of said substrate.
- 23. A coated hard alloy cutting tool as claimed in claim 18, wherein said substrate is provided with rake surfaces and flank surfaces, wherein tensile residual stresses in said primary layer on said rake surfaces are not greater than tensile residual stresses in said primary layer on said flank surfaces.
- 24. A coated hard alloy cutting tool, comprising:
- a substrate comprising WC and Co, wherein the maximum concentration of Co occurs in a surface layer region of 50 .mu.m from the external surface of said substrate, said maximum concentration is less than 15 wt %, said surface layer region is substantially free of the carbides of Ti, Ta and Nb containing W; the carbonitrides of Ti, Ta and Nb containing W; and the nitrides of Ti, Ta and Nb containing W; and
- at least one coating deposited on said surface of said substrate, said coating, sequentially consists of:
- (d) a first intermediate layer comprising a TiN layer;
- (a) a primary layer comprising a TiCN layer;
- (e) a second intermediate layer comprising at least one layer selected from the group consisting of a TiC layer, a TiCO layer and a TiCNO layer;
- (b) a secondary layer comprising an Al.sub.2 O.sub.3 layer; and
- (c) a surface layer comprising at least one layer selected from the group consisting of a TiCN layer and a TiN layer;
- wherein said substrate is provided with rake surfaces and flank surfaces;
- wherein said primary layer on said rake surfaces is treated to produce compressive residual stresses therein of not more than 20 Kg/mm.sup.2 ;
- wherein said primary layer on said flank surfaces is produced so that tensile residual stresses therein are not more than 30 kg/mm.sup.2 ; and
- wherein said layers (a)-(e) are deposited by chemical vapor deposition.
- 25. A coated hard alloy cutting tool as claimed in claim 1, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 26. A coated hard alloy cutting tool as claimed in claim 5, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 27. A coated hard alloy cutting tool as claimed in claim 6, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 28. A coated hard alloy cutting tool as claimed in claim 11, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 29. A coated hard alloy cutting tool as claimed in claim 12, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 30. A coated hard alloy cutting tool as claimed in claim 17, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 31. A coated hard alloy cutting tool as claimed in claim 18, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 32. A coated hard alloy cutting tool as claimed in claim 24, wherein said primary layer is deposited at a temperature of 840.degree.-900.degree. C.
- 33. A coated hard alloy cutting tool as claimed in claim 1, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 34. A coated hard alloy cutting tool as claimed in claim 5, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 35. A coated hard alloy cutting tool as claimed in claim 6, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 36. A coated hard alloy cutting tool as claimed in claim 11, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 37. A coated hard alloy cutting tool as claimed in claim 12, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 38. A coated hard alloy cutting tool as claimed in claim 17, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 39. A coated hard alloy cutting tool as claimed in claim 18, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
- 40. A coated hard alloy cutting tool as claimed in claim 24, wherein said primary layer is deposited by reacting a mixture comprising titanium tetrachloride and acetonitrile.
Parent Case Info
This is a continuation of application Ser. No. 07/964,947, filed on Oct. 22, 1992 now U.S. Pat. No. 5,372,873.
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Dec 1987 |
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4746563 |
Nakano et al. |
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4984940 |
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Continuations (1)
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Number |
Date |
Country |
Parent |
964947 |
Oct 1992 |
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