Claims
- 1. A device for providing a protective gas mantle around a plasma spray jet (2) directed toward a workpiece (3) to be coated with the plasma spray jet, the device comprising:
- a spray jet nozzle (5) through which the plasma spray jet is directed, the spray jet nozzle having an outlet diameter and an outlet edge portion (11);
- a protective gas nozzle (6) arranged concentric around the spray jet nozzle and having a lengthwise axis (15) and having a rear end (8) the outlet edge portion of the spray jet nozzle lying in a first plane extending perpendicular to the lengthwise axis;
- the protective gas nozzle including a front wall (13, 35) and a rear wall (12, 34) forming a ring-shaped gas feed channel (10, 31) for protective gas, the ring-shaped gas feed channel being located at the rear end of the protective gas nozzle and being arranged concentric around the spray jet nozzle, the front wall lying in a second plane extending perpendicular to the lengthwise axis;
- the protective gas nozzle having a core hollow space (26) through which the plasma spray jet and the protective gas flows, the core hollow space having a diameter and a length each of which is at least twice as large as the outlet diameter of the spray jet nozzle, the core hollow space being open at a front end (7) in the flow direction (25) of the plasma spray jet over the entire cross-sectional area of the protective gas and the plasma spray jet;
- the protective gas nozzle including a ring-shaped closing surface (9, 30) located at the rear end of the protective gas nozzle, the ring-shaped closing surface being symmetrical about the lengthwise axis and being at least partly curved, the ring-shaped closing surface having an inner side (33) connected with the outlet edge portion of the spray jet nozzle and an outer side connected with the rear wall;
- the ring-shaped closing surface lying opposite the front wall and cooperating with the front wall to form a nozzle channel (14) communicating between the ring-shaped gas feed channel and the core hollow space, the nozzle channel having a plurality of ring-shaped cross-sectional areas diverging toward the lengthwise axis, each of the ring-shaped cross-sectional areas lying in an associated plane of intersection extending perpendicular to the lengthwise axis, each of the ring-shaped cross-sectional areas having the same ring surface area independent of the radial distance of the ring-shaped cross-sectional area from the lengthwise axis; and
- the ring-shaped closing surface lying in a third plane extending perpendicular to the lengthwise axis, the second plane extending between the first plane and the third plane.
- 2. A device according to claim 1 wherein the nozzle channel (14) extends at first radially in the flow direction of the protective gas and perpendicular to the lengthwise axis (15) and then, at least partly continuously, turns in the flow direction (25) of the plasma spray jet (2).
- 3. A device according to claim 1 wherein the ring-shaped closing surface (9, 30), in the vicinity of the outlet edge portion (11), forms an angle (18) of 0.degree. to 60.degree. relative to the lengthwise axis (15), the angle being opened against the flow direction (25) of the plasma spray jet (2).
- 4. A device according to claim 1 further including a ring-shaped expansion channel (19, 32) arranged before the ring-shaped gas feed channel (10, 31).
- 5. A device according to claim 1 wherein the inner side (33) of the ring-shaped closing surface (30) is oblique relative to the lengthwise axis (15).
Priority Claims (1)
Number |
Date |
Country |
Kind |
00340/88 |
Feb 1988 |
CHX |
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Parent Case Info
This is a continuation of copending application Ser. No. 07/423,434 filed on Sep. 25, 1989, now abandoned International Application CH89/00009 filed on Jan. 13, 1989 and which designated the U.S.
US Referenced Citations (6)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2818303 |
Nov 1978 |
DEX |
Continuations (1)
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Number |
Date |
Country |
Parent |
423434 |
Sep 1989 |
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