IP Library › Granted Patent US 12,241,475
Granted Patent B2
US 12,241,475 · App. 17/966,255 · Granted Mar 4, 2025

Radial impeller

Inventors: Thomas Heigold (Gaisbach, DE); Klaus Gundel (Kupferzell-Belzhag, DE)
Assignee: Nicotra Gebhardt GmbH
F04D29/24F04D29/30
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Quick Facts
Patent No.
US 12,241,475
App. No.
17/966,255
Granted
Mar 4, 2025
Kind
B2
Abstract

A radial impeller having a cover plate with an inlet opening and a support plate, the plates being connected to one another by means of a vane ring having multiple vanes. The vanes each have two side edges opposite one another, one of which is connected to the cover plate and the other to the support plate. The side edges each extend between a vane inlet edge and a vane outlet edge which is opposite in a circumferential direction of the impeller. The vanes are each designed as a hollow profile and have two vane halves delimiting a cavity between them which are applied to one another and are each connected to one another in the region of the vane inlet edge and the vane outlet edge by means of a welded connection.

Claims (23)

1. A radial impeller, comprising: a cover plate with an inlet opening and a support plate, said plates being connected to one another by a vane ring having multiple vanes,

wherein said vanes each have two side edges opposite one another, one of which is connected to the cover plate and the other to the support plate,

wherein the side edges each extend between a vane inlet edge and a vane outlet edge which is opposite in a circumferential direction of the impeller,

wherein the vanes each have a hollow profile and have two vane halves delimiting a cavity between them which are applied to one another and are each connected to one another in the region of the vane inlet edge and the vane outlet edge by a welded connection,

wherein the vanes each have an inlet end region which tapers towards the vane inlet edge and which is formed by end portions of the two vane halves curved convexly on the outer faces of the vane halves facing away from one another, in such a manner that the inlet end region has a continuously curved outer contour extending over both vane halves,

wherein the vane inlet edge and the vane outlet edge of a respective vane have an arcuate profile starting from the cover plate in the direction of the support plate,

wherein the vanes are components which are separate from the cover plate and the support plate and are each connected in a region of their side edges to the cover plate and to the support plate by fastening measures that comprise a plug connection with elongate plug pins arranged on the vanes and mating plug elements in the form of receiving openings arranged on the cover plate and the support plate, and

wherein the elongated plug pins are arranged in alternate fashion and are alternating in a region of an outer face of a first of the two vane halves and an outer face of a second of the two vane halves.

2. The radial impeller according to claim 1 , wherein the convexly curved end portions are each formed portions produced without machining by plastic forming of a vane half blank.

3. The radial impeller according to claim 1 , wherein the welded connection is a laser-welded connection.

4. The radial impeller according to claim 1 , wherein the welded connection has at least one welded seam extending substantially over the entire length of the vane inlet edge and/or the vane outlet edge.

5. The radial impeller according to claim 1 , wherein the fastening measures further comprise a welded connection, with which the vanes are each welded to the cover plate and to the support plate.

6. The radial impeller according to claim 1 , wherein the elongate plug pins are adapted to the contour of the outer surfaces of the vane halves and likewise have a convexly curved design, wherein the contour of the receiving slot is adapted to the contour of the elongate plug pins.

7. The radial impeller according to claim 1 , wherein the vanes are tilted from the inside outwards against the running direction and are in the form of backwardly curved vanes.

8. The radial impeller according to claim 1 , wherein the vane inlet edge and/or the vane outlet edge of a respective vane has an arcuate profile starting from the cover plate in the direction of the support plate.

9. The radial impeller according to claim 1 , wherein the vanes are each made of a aluminum or an aluminum alloy.

10. A method for producing the radial impeller according to claim 1 , said method comprising the following steps:

provision of two vane halves and assembly of the two vane halves in such a manner that a hollow profile is formed and the two vane halves together form a vane inlet edge and a vane outlet edge,

welding of the two vane halves in the region of the vane inlet edge and the vane outlet edge to form a vane,

implementation of the aforementioned method steps to produce all vanes of the vane ring, and

connection of the vanes in the region of the side edges thereof, firstly to the cover plate and secondly to the support plate.

11. The method according to claim 10 , wherein the vane halves are each plastically formed prior to assembly in order to produce convexly curved inner portions.

12. The method according to claim 10 , wherein the vanes are connected to the cover and support plate in a form-fitting manner via the combination of plug pins and the receiving slot and the plug connections of the plug pins with the receiving slots are then welded, wherein the welding takes place on an outer side of the cover plate or support plate facing away from the vane ring.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 17, 2022
From: HEIGOLD, THOMAS; GUNDEL, KLAUS
To: NICOTRA GEBHARDT GMBH
Reel/Frame 061812/0067 →
Priority Claims (1)
EP 21202991 · Oct 15, 2021 · regional
Continuity (1)
Related Publication 20230124865A1 · Apr 20, 2023
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