Claims
- 1. A method for manufacturing a workpiece coated with an oxide of a metal alloy, comprising evaporating a target using cathodic arc vaporization in an atmosphere containing oxygen, and providing the target to be of an alloy material which is essentially in a single phase so as to reduce occurrence of droplets during reactive cathodic arc evaporation of the metal alloy material in the oxygen containing atmosphere.
- 2. A method as stated in claim 1, wherein the cathodic arc evaporating step uses an arc discharge which is operated in at least one of: a domain of a partial pressure of oxygen; a domain where a field strength of a magnetic field generated with a significant component in the direction of the arc discharge; and in which at least ten cathodic arc spots are present on the target.
- 3. A method as stated in claim 2, wherein the arc discharge is operated in at least one of the domains so that at least nearly a maximum number of cathodic arc spots is present on the target.
- 4. A method as stated in claim 1, wherein
a) the partial pressure of oxygen during the coating process is observed and deviations from a nominal partial pressure are minimized by setting at least one of the following parameters: mass flow of oxygen, arc voltage, and field strength of a magnetic field substantially perpendicular to the target surface; or b) the arc voltage is observed and deviations from a nominal conducting arc voltage are minimized by setting at least one of the following parameters: mass flow of oxygen, and said magnetic field; or c) a frequency spectrum of the discharge current is observed and deviations of characteristic components of the spectrum from nominal characteristics are minimized by setting at least one of the following parameters: arc voltage, mass flow of oxygen, and said magnetic field; and the observed variable, the comparison with a corresponding nominal value and the setting taking place automatically by means of a process operating point closed loop.
- 5. A method as stated in claim 1, wherein the alloy is present at least as 70 at %, in the one phase.
- 6. A method for the production of a target from a metal alloy with the alloy being present in the target substantially in a single phase, for implementing the process according to claim 1, wherein the target is cast.
- 7. According to claim 1, wherein an intermetallic alloy compound is pulverized and the target is formed thermomechanically.
- 8. A method as stated in claim 1, wherein the alloy is an aluminum/chromium alloy.
- 9. A method as stated in claim 1, wherein the alloy comprises at least 5 at % chromium.
- 10. A method as stated in claim 1, wherein the alloy comprises at least 10 at % to 50 at % chromium.
- 11. A method as stated in claim 1, wherein an oxide of an aluminum/chromium alloy is deposited and that for increasing the adhesion of the deposited layer, in particular on mechanically resistant metal or ceramic bodies, a metallic intermediate layer is provided as an adhesion layer.
- 12. A method as stated in claim 1, wherein for the alloy of an electrically conducting target, in an oxygen atmosphere, the workpiece is coated with a layer with is a poorer electrical conductor than the vaporized target material.
Priority Claims (1)
Number |
Date |
Country |
Kind |
2'024/94-4 |
Jun 1994 |
CH |
|
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a divisional of application Ser. No. 08/927,864 filed Sep. 11, 1997 and now U.S. Pat. No. ______, which was a continuation of application Ser. No. 08/493,668 filed Jun. 22, 1995, now abandoned, which claimed priority from Swiss application number 2'024/94-4 filed Jun. 24, 1994, which priority claim is repeated for the present application.
Divisions (1)
|
Number |
Date |
Country |
Parent |
08927864 |
Sep 1997 |
US |
Child |
10463096 |
Jun 2003 |
US |
Continuations (1)
|
Number |
Date |
Country |
Parent |
08493668 |
Jun 1995 |
US |
Child |
08927864 |
Sep 1997 |
US |