Claims
- 1. A method of making a milling insert comprising a cemented carbide body and a coating wherein the WC-Co-based cemented carbide body comprises WC, 7.3-7.9 wt. % Co and 1.0-1.8 wt. % cubic carbides of Ta and Nb and a highly W-alloyed binder phase with a CW-ratio of 0.86-0.94, the method comprising the steps of:depositing by a CVD-method a first, innermost layer of TiCxNyOz with x+y+z=1, y>x and z<0.2 having an equiaxed grain structure with a size <0.5 μm and a total thickness of 0.1-1.5 μm; depositing by a MTCVD-technique a layer of TiCxNy with x+y=1, x>0.3 and y>0.3 with a thickness of 1-4 μm having a columnar grain structure with an average diameter of <5 μm, wherein the MTCVD-technique uses acetonitrile as a source of carbon and nitrogen for forming a layer in a temperature range of 700-900° C.; depositing a layer of a smooth κ-Al2O3 with a thickness of 1-2.5 μm; and depositing an outer layer of TiN with a thickness of 0.5-1.0 μm.
- 2. The method according to the claim 1, wherein the cemented carbide body contains 1.4-1.7 wt. % carbides of Ta and Nb.
- 3. The method according to claim 1, further comprising the step of removing the outer layer of TiN along a cutting edge.
- 4. The method of making a milling insert of claim 1, wherein the first, innermost layer of TiCxNyOz has y>0.8 and z=0.
- 5. The method of making a milling insert of claim 1, wherein the layer of TiCxNy has x≧0.5.
- 6. A method of wet milling comprising the steps of:providing a cutting tool insert comprising a cemented carbide body comprising WC, 7.3-7.9 wt. % Co, 1.0-1.8 wt. % cubic carbides of Ta and Nb, and a highly W-alloyed binder phase with a CW-ratio of 0.86-0.94, a coating comprising a first, innermost layer of TiCxNyOz with x+y+z=1, y>x and z<0.2 having an equiaxed grain structure with a size <0.5 μm and a total thickness of 0.1-1.5 μm, a layer of TiCxNy with x+y=1, x>0.3 and y>0.3 with a thickness of 1-4 μm having a columnar grain structure with an average diameter of <5 μm, a layer of a smooth, fine-grained, 0.5-2 μm κ-Al2O3 with a thickness of 1-2.5 μm, and an outer layer of TiN with a thickness of 0.5-1.0 μm; operating the cutting tool insert at a speed of 70-180 m/min; and feeding at a rate of 0.1-0.4 μm/tooth, wherein the wet milling is wet milling a cast iron, a compacted graphite iron or a nodular iron.
- 7. The method of claim 6, wherein the cast iron is a grey cast iron.
Priority Claims (1)
Number |
Date |
Country |
Kind |
0004079 |
Nov 2000 |
SE |
|
Parent Case Info
This application is a divisional of application Ser. No. 09/984,145, filed on Oct. 29, 2001,now U.S. Pat. No. 6,638,609.
This application claims priority under 35 U.S.C. §§119 and/or 365 to Application No. 004079-0 filed in Sweden on Nov. 8, 2001, the entire content of which is hereby incorporated by reference.
US Referenced Citations (7)
Number |
Name |
Date |
Kind |
5674564 |
Ljungberg et al. |
Oct 1997 |
A |
5861210 |
Lenander et al. |
Jan 1999 |
A |
5863640 |
Ljungberg et al. |
Jan 1999 |
A |
5912051 |
Olsson et al. |
Jun 1999 |
A |
6062776 |
Sandman et al. |
May 2000 |
A |
6177178 |
Östlund et al. |
Jan 2001 |
B1 |
6406224 |
Östlund et al. |
Jun 2002 |
B1 |
Foreign Referenced Citations (1)
Number |
Date |
Country |
0116388 |
Mar 2001 |
WO |