IP Library Granted Patent US 10,389,074
Granted Patent B2
US 10,389,074 · App. 15/566,973 · Granted Aug 20, 2019

Slip ring unit for a rotor of an electrically excited rotary dynamo-electric machine

Inventors: Herbert Binder (Neuburg, DE); Oliver Memminger (Neuburg a. Inn, DE)
Assignee: Siemens Aktiengesellschaft
H01R39/08H01R39/34H02H3/165H02K13/003H02K13/02Y02E10/725
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Quick Facts
Patent No.
US 10,389,074
App. No.
15/566,973
Granted
Aug 20, 2019
Kind
B2
Abstract

A slip ring unit for an electrically excited rotor of a rotary dynamo-electric machine includes an electrical terminal which protrudes axially from an end face of the slip ring unit and having a contact point and a circumferential slip contact surface electrically connected to the electrical terminal. Disposed adjacent to the slip contact surface is an insulation element, with end plates axially retaining the circumferential slip contact surface and the insulation element. An electrically insulated support element is arranged on an end face of the slip ring unit and has a cross section which substantially matches a cross section of the slip ring unit. The support element axially surrounds the electrical terminal and radially supports the electrical terminal.

Claims (26)

1. A slip ring unit for an electrically excited rotor of a rotary dynamo-electric machine, said slip ring unit comprising:

an electrical terminal protruding axially from an end face of the slip ring unit and having a contact point;

a circumferential slip contact surface electrically connected to the electrical terminal;

an insulation element disposed adjacent to the slip contact surface;

end plates axially retaining the circumferential slip contact surface and the insulation element;

an electrically insulated support element arranged on an end face of the slip ring unit and having a cross section which substantially matches a cross section of the slip ring unit, said support element disposed in axial surrounding relation to the electrical terminal and radially supporting the electrical terminal; and

an insulation surrounding the electrical terminal such that the contact point remains exposed.

2. The slip ring unit of claim 1 , wherein the electrical terminal is a bolt.

3. The slip ring unit of claim 1 , wherein the support element is configured to lengthen a leakage path.

4. The slip ring unit of claim 3 , wherein the leakage path is lengthened at a radially outer circumferential surface of the support element.

5. The slip ring unit of claim 3 , wherein the support element has circumferential ribs for lengthening the leakage path.

6. A rotary dynamo-electric machine, comprising:

an electrically excited rotor; and

a slip ring unit disposed on an axial extension of the rotor and including an electrical terminal protruding axially from an end face of the slip ring unit and having a contact point, a circumferential slip contact surface electrically connected to the electrical terminal, an insulation element disposed adjacent to the slip contact surface, end plates axially retaining the circumferential slip contact surface and the insulation element, an electrically insulated support element arranged on an end face of the slip ring unit and having a cross section which substantially matches a cross section of the slip ring unit, said support element disposed in axial surrounding relation to the electrical terminal and radially supporting the electrical terminal, and an insulation surrounding the electrical terminal such that the contact point remains exposed.

7. The dynamo-electric machine of claim 6 , wherein the rotor and the slip ring unit rotate about a same axis.

8. The dynamo-electric machine of claim 6 , wherein the electrical terminal is a bolt.

9. The dynamo-electric machine of claim 6 , wherein the support element is configured to lengthen a leakage path.

10. The dynamo-electric machine of claim 6 , wherein the leakage path is lengthened at a radially outer circumferential surface of the support element.

11. The dynamo-electric machine of claim 6 , wherein the support element has circumferential ribs for lengthening the leakage path.

12. A wind power generator, comprising a rotary dynamo-electric machine, said rotary dynamo-electric machine comprising an electrically excited rotor, and a slip ring unit disposed on an axial extension of the rotor and including an electrical terminal protruding axially from an end face of the slip ring unit and having a contact point, a circumferential slip contact surface electrically connected to the electrical terminal, an insulation element disposed adjacent to the slip contact surface, end plates axially retaining the circumferential slip contact surface and the insulation element, an electrically insulated support element arranged on an end face of the slip ring unit and having a cross section which substantially matches a cross section of the slip ring unit, said support element disposed in axial surrounding relation to the electrical terminal and radially supporting the electrical terminal, and an insulation surrounding the electrical terminal such that the contact point remains exposed.

13. The wind power generator of claim 12 , wherein the rotor and the slip ring unit rotate about a same axis.

14. The wind power generator of claim 12 , wherein the electrical terminal is a bolt.

15. The wind power generator of claim 12 , wherein the support element is configured to lengthen a leakage path.

16. The wind power generator of claim 12 , wherein the leakage path is lengthened at a radially outer circumferential surface of the support element.

17. The wind power generator of claim 12 , wherein the support element has circumferential ribs for lengthening the leakage path.

18. A wind power installation, comprising a wind power generator, said wind power generator comprising a rotary dynamo-electric machine, said rotary dynamo-electric machine comprising an electrically excited rotor, and a slip ring unit disposed on an axial extension of the rotor and including an electrical terminal protruding axially from an end face of the slip ring unit and having a contact point, a circumferential slip contact surface electrically connected to the electrical terminal, an insulation element disposed adjacent to the slip contact surface, end plates axially retaining the circumferential slip contact surface and the insulation element, an electrically insulated support element arranged on an end face of the slip ring unit and having a cross section which substantially matches a cross section of the slip ring unit, said support element disposed in axial surrounding relation to the electrical terminal and radially supporting the electrical terminal, and an insulation surrounding the terminal such that the contact point remains exposed.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2020
From: SIEMENS AKTIENGESELLSCHAFT
To: FLENDER GMBH
Reel/Frame 054587/0587 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2017
From: BINDER, HERBERT; MEMMINGER, OLIVER
To: SIEMENS AKTIENGESELLSCHAFT
Reel/Frame 044333/0818 →
Priority Claims (1)
EP 15164054 · Apr 17, 2015 · regional
Continuity (1)
Related Publication 20180131149A1 · May 10, 2018