IP Library Granted Patent US 11,368,081
Granted Patent B2
US 11,368,081 · App. 16/963,783 · Granted Jun 21, 2022

Magnetic coupling element with a magnetic bearing function

Inventors: Andreas Vogt (Renningen, DE); Armin Schuelke (Aidlingen, DE); Xiang Li (Ditzingen, DE); David Minzenmay (Stuttgart, DE)
Assignee: Kardion GmbH
H02K49/108F16C32/047H02K7/09
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Quick Facts
Patent No.
US 11,368,081
App. No.
16/963,783
Granted
Jun 21, 2022
Kind
B2
Abstract

The invention relates to a magnetic coupling element ( 100 ) with a magnetic bearing function. The magnetic coupling element ( 100 ) has a drive-side coupling magnet ( 109 ) arranged on a drive shaft ( 106 ), and also an output-side coupling magnet ( 115 ) arranged on an output shaft ( 112 ), the output-side coupling magnet ( 115 ) being magnetically coupled to the drive-side coupling magnet ( 109 ), and finally a bearing magnet ring ( 118 ) which is non-rotatably mounted with respect to the drive-side or output-side coupling magnet ( 109 ) or ( 115 ), a bearing magnet portion ( 133, 136 ) of the bearing magnet ring ( 118 ) having the same polarity as a coupling magnet portion ( 127, 130 ) opposite the bearing magnet portion ( 136 ).

Claims (38)

1. A pump having a magnetic coupling element, wherein the magnetic coupling element comprises:

a drive-side coupling magnet arranged with a drive component;

an output-side coupling magnet arranged with an output component, the output-side coupling magnet being magnetically coupled to the drive-side coupling magnet; and

a bearing magnet ring which is non-rotatably mounted with respect to the drive-side or output-side coupling magnet, wherein at least a bearing magnet portion of the bearing magnet ring has a same polarity as a coupling magnet portion of the drive-side coupling magnet or the output-side coupling magnet, and wherein the coupling magnet portion is located radially opposite the bearing magnet portion,

wherein the bearing magnet portion has an angular offset with respect to the coupling magnet portion.

2. The pump of claim 1 , wherein the bearing magnet ring, and the drive-side or output-side coupling magnet, have magnetic poles which attract one another in an axial direction and repel one another in a radial direction.

3. The pump of claim 1 , wherein the drive-side and the output-side coupling magnet each have coupling magnet portions having a different polarity arranged in an axial direction.

4. The pump of claim 1 , wherein the bearing magnet ring comprises at least two bearing magnet portions of a different polarity arranged beside one another in an axial direction.

5. The pump of claim 1 , wherein the bearing magnet ring surrounds at least one portion of the drive-side or output-side coupling magnet.

6. The pump of claim 1 , wherein the drive-side or output-side coupling magnet radially surrounds the bearing magnet ring.

7. The pump of claim 6 , wherein the bearing magnet ring is separated from the drive-side or output-side coupling magnet by a tubular portion of a housing element.

8. The pump of claim 7 , wherein the housing element is made from a non-magnetic material.

9. The pump of claim 7 , wherein the housing element is non-rotatable.

10. The pump of claim 1 , wherein the drive component comprises a drive shaft.

11. The pump of claim 10 , wherein the drive-side coupling magnet is arranged on the drive shaft.

12. The pump of claim 1 , wherein the output component comprises an output shaft.

13. The pump of claim 12 , wherein the output-side coupling magnet is arranged on the output shaft.

14. A pump having a magnetic coupling element, wherein the magnetic coupling element comprises:

a drive-side coupling magnet arranged with a drive component;

an output-side coupling magnet arranged with an output component, the output-side coupling magnet being magnetically coupled to the drive-side coupling magnet; and

a bearing magnet ring which is non-rotatably mounted with respect to the drive-side or output-side coupling magnet, wherein at least a bearing magnet portion of the bearing magnet ring has a same polarity as a coupling magnet portion of the drive-side coupling magnet or the output-side coupling magnet, and wherein the coupling magnet portion is located radially opposite the bearing magnet portion,

wherein the drive-side coupling magnet or the output-side coupling magnet radially surrounds the bearing magnet ring.

15. The pump of claim 14 , wherein the bearing magnet ring, and the drive-side or output-side coupling magnet, have magnetic poles which attract one another in an axial direction and repel one another in a radial direction.

16. The pump of claim 14 , wherein the drive-side and the output-side coupling magnet each have coupling magnet portions having a different polarity arranged in an axial direction.

17. The pump of claim 14 , wherein the bearing magnet ring comprises at least two bearing magnet portions of a different polarity arranged beside one another in an axial direction.

18. The pump of claim 14 , wherein the bearing magnet ring surrounds at least one portion of the drive-side or output-side coupling magnet.

19. The pump of claim 14 , wherein the bearing magnet ring is separated from the drive-side or output-side coupling magnet by a tubular portion of a housing element.

20. The pump of claim 19 , wherein the housing element is made from a non-magnetic material.

21. The pump of claim 19 , wherein the housing element is non-rotatable.

22. The pump of claim 14 , wherein the drive component comprises a drive shaft.

23. The pump of claim 22 , wherein the drive-side coupling magnet is arranged on the drive shaft.

24. The pump of claim 14 , wherein the output component comprises an output shaft.

25. The pump of claim 24 , wherein the output-side coupling magnet is arranged on the output shaft.

26. A method for producing a magnetic coupling element with a magnetic bearing, the method comprising:

providing a drive-side coupling magnet arranged with a drive component, an output-side coupling magnet arranged with an output component, and a bearing magnet ring; and

assembling the drive-side coupling magnet, the output-side coupling magnet, and the bearing magnet ring such that the output-side coupling magnet is magnetically coupled to the drive-side coupling magnet and the bearing magnet ring is non-rotatably mounted with respect to the drive-side or output-side coupling magnet, wherein at least a bearing magnet portion of the bearing magnet ring has a same polarity as a coupling magnet portion of the drive-side coupling magnet or the output-side magnet that is located radially opposite the bearing magnet portion, in order to produce the magnetic coupling element with a magnetic bearing,

wherein the assembling step comprises assembling the drive-side coupling magnet or the output-side coupling magnet to radially surround the bearing magnet ring.

27. The method of claim 26 , wherein the assembling step comprises assembling the bearing magnet ring to surround at least one portion of the drive-side or output-side coupling magnet.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2021
From: VOGT, ANDREAS; SCHUELKE, ARMIN; LI, XIANG; MINZENMAY, DAVID
To: ROBERT BOSCH GMBH
Reel/Frame 058274/0158 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 2, 2021
From: ROBERT BOSCH GMBH
To: KARDION GMBH
Reel/Frame 058274/0562 →
SECURITY INTEREST Recorded Apr 26, 2021
From: KARDION GMBH
To: EDWARDS LIFESCIENCES HOLDING, INC.
Reel/Frame 056046/0422 →
Cited By (15)
US 12,383,727 US 12,390,633 US 12,400,788 US 12,403,296 US 12,447,327 US 12,465,744 US 12,476,488 US 12,478,775 US 12,478,776 US 12,515,036 US 12,523,228 US 12,589,237 US 12,589,238 US 12,667,714 US 12,702,821