SLIPRING WITH ACTIVE COOLING
20170012505 ยท 2017-01-12
Inventors
Cpc classification
H01R39/46
ELECTRICITY
H02K9/28
ELECTRICITY
International classification
H02K9/28
ELECTRICITY
H01R39/46
ELECTRICITY
H02K13/00
ELECTRICITY
Abstract
A slipring assembly comprises a slipring module having at least one slipring track, which is in electrical contact with at least one slipring brush. The slipring module comprises an isolating body holding the at least one slipring track. Furthermore a cooling element is embedded into or attached to the slipring module to remove heat from the slipring module and to increase the temperature of the at least one slipring track. This allows decreasing the temperature of the slipring module to increase the maximum transferable power and lifetime.
Claims
1. A slipring module comprising an insulating body holding at least one slipring track, the slipring module comprising: at least one cooling element configured to remove heat and decrease temperature of the at least one slipring track, the at least one cooling element being integrated into the insulating body and being electrically isolated from the at least one slip ring track.
2. A slipring module according to claim 1, wherein the at least one cooling element comprises a pipe and a cooling liquid flowing through the pipe.
3. A slipring module according to claim 2, wherein the cooling liquid is supplied by a liquid media rotary joint.
4. A slipring module according to claim 1, wherein the at least one cooling element comprises a Peltier element.
5. A slipring module according to claim 1, further comprising a heat sink, wherein the at least one cooling element is coupled to the heat sink.
6. A slipring module according to claim 1, wherein the at least one cooling element comprises a heat pipe.
7. A slipring module according to claim 1, wherein the at least one cooling element is in close thermal contact with the at least one slipring track.
8. A slipring module according to claim 1, further comprising a cooling controller configured to deliver a cooling agent through the at least one cooling element, the cooling controller configured to carry out at least one of (a) controlling temperature of at least one of the slipring module and the at least one slipring track to a constant value, and (b) heating at least one of the slipring module and the at least one slipring track if a temperature thereof is below a lower temperature limit.
9. A slipring module according to claim 8, further comprising a temperature sensor configured to measure said temperature and forward a value of said temperature to the cooling controller.
10. A slipring module according to claim 4, further comprising a cooling controller configured to control current through the Peltier element, the cooling controller configured to carry out at least one of (a) controlling temperature, of at least one of the slipring module and the at least one slipring track, to a constant value, and (b) heating at least one of the slipring module and the at least one slipring track if temperature thereof is below a lower temperature limit.
11. A slipring module according to claim 10, further comprising a temperature sensor configured to measure said temperature and forward a value of said temperature to the cooling controller.
12. A slipring assembly comprising at least one slipring brush and at least one slipring module, the slipring module further comprising: an insulating body holding at least one slipring track and at least one cooling element configured to remove heat and decrease temperature of the at least one slipring track, the at least one cooling element being integrated into the insulating body and being electrically isolated from the at least one slip ring track.
13. A slipring assembly according to claim 12, further comprising a housing enclosing the at least one slipring module and the at least one slipring brush.
14. A method for cooling of at least one of (i) at least one slipring track and (ii) a slipring module that includes said at least one slipring track by letting a cooling liquid flow through a cooling element of the slipring module to remove heat and decrease temperature of the at least one said at least one slipring track and said slipring module.
15. A slipring assembly according to claim 1, wherein the at least one cooling element comprises a pipe and a cooling liquid contained in the pipe.
16. A slipring assembly according to claim 1, wherein the at least one cooling element comprises a pipe and a cooling fluid contained in the pipe.
17. A slipring assembly according to claim 8, wherein the temperature sensor is embedded into the isolated body.
18. A slipring assembly according to claim 11, wherein the temperature sensor is embedded into the isolated body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0022] In the following, the invention will be described by way of example, without limitation of the general inventive concept, on examples of embodiment and with reference to the drawings.
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[0033] While the invention can be modified without changing its scope and take alternative forms, specific embodiments thereof are shown by way of example in the drawings and will herein be described in detail. It should be understood, however, that the drawings and detailed description thereto are not intended to limit the invention to the particular form disclosed, but on the contrary, the intention is to cover all modifications, equivalents and alternatives falling within the spirit and scope of the present invention as defined by the appended claims.
DETAILED DESCRIPTION
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[0044] It will be appreciated to those skilled in the art having the benefit of this disclosure that this invention is believed to provide a slipring or a rotary joint with integrated cooling. Further modifications and alternative embodiments of various aspects of the invention will be apparent to those skilled in the art in view of this description. Accordingly, this description is to be construed as illustrative only and is for the purpose of teaching those skilled in the art the general manner of carrying out the invention. It is to be understood that the forms of the invention shown and described herein are to be taken as the presently preferred embodiments. Elements and materials may be substituted for those illustrated and described herein, parts and processes may be reversed, and certain features of the invention may be utilized independently, all as would be apparent to one skilled in the art after having the benefit of this description of the invention. Changes may be made in the elements described herein without departing from the spirit and scope of the invention as described in the following claims.
LIST OF REFERENCE NUMERALS
[0045] 10 slipring module [0046] 11 module support [0047] 12 shaft [0048] 13 isolating body [0049] 14 rotation axis [0050] 15 second slipring module [0051] 16 liquid media rotary joint [0052] 17 first track [0053] 18 second track [0054] 19 third track [0055] 20 brush holder [0056] 21 first brush [0057] 22 second brush [0058] 30 slipring housing [0059] 31 ceiling [0060] 40 sidewall [0061] 50 connecting space [0062] 51 first cover [0063] 52 screws [0064] 60 cooling element [0065] 61 cooling element inlet [0066] 62 cooling element outlet [0067] 63 cooling pipe [0068] 70 inner space of housing [0069] 71 second cover [0070] 80 controller [0071] 81 temperature sensor [0072] 82 humidity sensor [0073] 90 housing of bearing [0074] 91 module connection case [0075] 100 third slipring module [0076] 101 first cooling element [0077] 102 second cooling element [0078] 103 third cooling element [0079] 108 pipe connector [0080] 109 hole [0081] 110 first track [0082] 111 second track [0083] 112 third track [0084] 113 second track [0085] 114 third track [0086] 120 isolating body [0087] 130 through hole [0088] 131, 132 connecting pipes [0089] 140 cooling element [0090] 141 slipring track [0091] 142 thread