ELECTRICAL MACHINE COMPRISING A HIGH-VOLTAGE CONNECTION ARRANGEMENT AND A SAFETY LOCKING DEVICE
20220311305 ยท 2022-09-29
Inventors
- Sebastian Baumgart (Burkardroth, DE)
- Katja WILLACKER (Wiesentheid, DE)
- Norbert LOHAUS (Schweinfurt, DE)
Cpc classification
H02K2213/06
ELECTRICITY
H01R31/08
ELECTRICITY
Y02T10/64
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B60L3/04
PERFORMING OPERATIONS; TRANSPORTING
H01R24/20
ELECTRICITY
H02K11/20
ELECTRICITY
International classification
Abstract
An electrical machine having a housing with a central receiving space in which a stator winding and an interconnection arrangement with a plurality of internal conductors is arranged. A high-voltage connection arrangement with a plurality of connecting points at which the internal conductors are connected in pairs to external conductors of a high-voltage source are provided. The high-voltage connection arrangement has a removable cover which closes an access region, and an electrical safety locking device (interlock) with a low-voltage circuit that detects an opening state of the access region of the high-voltage connection arrangement and the high-voltage connection arrangement is switched to zero potential when an open state of the access region is detected. The external conductors are inserted into the receiving space through the machine housing from the outside forming the high-voltage connection arrangement and arranging the electrical component within the receiving space.
Claims
1.-10. (canceled)
11. An electrical machine, comprising: a machine housing having a central receiving space; a stator arranged in the central receiving space, having: a stator winding and an interconnection arrangement arranged at an end face of the stator, comprising: a plurality of internal conductors; a high-voltage connection arrangement having a plurality of connecting points at which the internal conductors are configured to be connected in pairs to external conductors connected to a high-voltage source; a guard, which is removable, and which closes an access region of the high-voltage connection arrangement; and an electrical safety locking device having a low-voltage circuit, wherein, as a result of a change in an assembly state of the guard, an electrical component is influenced to thus detect an opening state of the access region of the high-voltage connection arrangement, and wherein the high-voltage connection arrangement is de-energized upon a detected open state of the access region, wherein: the external conductors are inserted into the central receiving space from the outside through the machine housing; the high-voltage connection arrangement and the access region are formed within the central receiving space; and the electrical component is arranged within the central receiving space.
12. The electrical machine as claimed in claim 11, wherein the access region is formed at an end face of the machine housing and outside an axial extent of a stator laminated core.
13. The electrical machine as claimed in claim 11, wherein the guard is provided at an end shield of the machine housing.
14. The electrical machine as claimed in claim 11, wherein the internal conductors are arranged in a substantially common connecting plane and in that the external conductors are inserted into the central receiving space through the machine housing, and connected to the internal conductors at the connecting points, substantially in this connecting plane.
15. The electrical machine as claimed in claim 11, wherein the electrical component is a coupling having two coupling elements that are joined to one another in an opening direction of the guard and wherein one of the coupling elements is fastened on the guard and an other coupling element is fastened on the interconnection arrangement.
16. The electrical machine as claimed in claim 15, wherein one of the coupling elements is fastened such that it is capable of a limited lateral displacement in a plane which is substantially perpendicular to the opening direction of the guard or a joining direction of the coupling elements by utilizing a movement clearance.
17. The electrical machine as claimed in claim 15, wherein one of the coupling elements is formed in two parts and has a base part fastened on the interconnection arrangement or on the guard, and an electrical contact part connected to the base part.
18. The electrical machine as claimed in claim 17, wherein the interconnection arrangement or the guard has a receiving portion for receiving the base part, between which receiving portion and the guard a lateral movement clearance is formed.
19. The electrical machine as claimed in claim 11, wherein the electrical component is fastened between two connecting points on the high-voltage connection arrangement.
20. The electrical machine as claimed in claim 11, wherein a rotor is mounted to be rotatable about an axis A is provided for cooperation with the stator.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0018] The invention is explained by way of example below, with reference to an embodiment illustrated in the figures, in which:
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
[0025]
DETAILED DESCRIPTION OF THE PRESENTLY PREFERRED EMBODIMENTS
[0026] When seen together,
[0027]
[0028] The stator 14 comprises a stator laminated core 26 on which a multi-phase stator winding 28 is formed to generate an electromagnetic alternating field and wherein winding ends 30 are connected to a plurality of strip-shaped collector bars 34 or busbars 34 (34A, 34B, 34C) by an interconnection arrangement in the interior of the electrical device. The collector bars 34 form internal conductors and extend in the circumferential direction at the end face of the stator 14 and can surround this completely or partially and, in the latter case, be formed as ring segments. The busbars 34 are insulated from one another and, in the exemplary embodiment, are overmolded with a plastic apart from the exposed connection portions 340 (340A, 340B, 340C) visible for example in
[0029] The electrical machine 10 further comprises a high-voltage connection arrangement 36 having a plurality of connecting points 38 (38A, 38B, 38C) at which the internal conductors in the form of the busbars 34 are connected in pairs by the tab-shaped connection portions 340 to external conductors 40 (40A, 40B, 40C) by threaded bolts 39, which can be connected to a high-voltage source 44 via an inverter 42. The inverter 42 is arranged in an inverter housing 42A, which is arranged and formed separately from the machine housing 18 in the schematic illustration of
[0030] The external conductors 40 in
[0031] As can be seen in
[0032] The high-voltage connection arrangement 36 has a removable guard or a cover 50 (
[0033] The electrical machine 10 further comprises an electrical safety locking device (interlock) 52 having a low-voltage circuit 54 (illustrated merely schematically in the drawing in
[0034] The high-voltage connection arrangement 36 and the access region 37 are formed within the receiving space 24 as can be seen in
[0035] The previously mentioned electrical component 56 is likewise arranged within the receiving space 24 and is located in a space-saving and at the same time protected manner between two connecting points 38 on the high-voltage connection arrangement 36 or between two connection portions 340 and 400 on the interconnection arrangement 32.
[0036] The component 56 of the safety locking device 52 is generally formed as an interrupter contact in the form of an electrical coupling 58 or a switch. The coupling 58 has two electrical connections or contacts and, in the present case, is formed as a plug-in coupling 58 having two coupling elements 60, 62, which can be joined together in an opening direction of the guard 50. To this end, the coupling element 60 is fastened on the guard 50 and the other coupling element 62 is fastened on the interconnection arrangement 32.
[0037] The coupling element 62, which is fastened between two internal conductors 34 or connection tabs 340 on the interconnection arrangement 32, is formed with two open socket-shaped contacts 62-1; 62-2, which can be electrically bridged or connected by a conductor bridge 60-1 of the coupling element 60 formed as a plug and fastened on the guard 50. The joining direction of the coupling elements 60, 62 coincides with the opening direction of the guard 50, wherein the joining direction is also approximately perpendicular to the connecting plane 46 of the internal and external conductors 34, 40.
[0038] The coupling element 60 is formed in two parts and has a base part 60A connected to the cover 50 by a latching connection 64-1 and a contact part 60B for the conductor bridge 60-1, which contact part is joined together with the base part by a latching connection 64-2 (
[0039] The coupling element 62 is likewise formed in two parts and has a base part 62A arranged on the interconnection arrangement 32 and an electrical contact part 62B for a signal line 620B, which contact part can be connected to the base part. The base part 62A and the contact part 62B are connected to one another without tools by a plug-in latching connection. The contact part 62B is further arranged in a protected manner within a receiving space 620A formed in the base part 62A and is incorporated within the base part 62A such that it is slightly recessed in the direction of the guard element 50. A collar 622A, which is formed in the assembly direction and opens to the cover 50 in the form of a funnel, projects over the contact part 62B so that the collar 622A can act as a mutual positioning aid when the two parts are plugged together.
[0040] To ensure mutual engagement of the two coupling elements 60; 62, the coupling element 62 arranged on the interconnection arrangement 32 is capable of a limited lateral displacement in the plane which is substantially perpendicular to the opening direction of the guard or the joining direction of the coupling elements 60, 62 by utilizing a movement clearance. As a result, if the guard 50 is seated on the housing 18, in particular on the end shield 20, and there is a deviation in the position of this coupling element 62, a lateral displacement of this coupling element 62 can take place until the two coupling elements 60, 62 can be joined together in a simple and trouble-free manner. For this purpose, a receiving portion 32A for receiving a first supporting portion 624A of the base part 62A is formed on a plastic region of the interconnection arrangement 32, wherein the lateral movement clearance between the receiving portion 32A and the base part 62A is adjusted or retained. Further fastening and axial support of the base part 62A takes place via a second supporting portion 626A, which is supported on the stator carrier 16 and which likewise has a lateral movement clearance there.
[0041] Thus, while there have shown and described and pointed out fundamental novel features of the invention as applied to a preferred embodiment thereof, it will be understood that various omissions and substitutions and changes in the form and details of the devices illustrated, and in their operation, may be made by those skilled in the art without departing from the spirit of the invention. For example, it is expressly intended that all combinations of those elements and/or method steps which perform substantially the same function in substantially the same way to achieve the same results are within the scope of the invention. Moreover, it should be recognized that structures and/or elements and/or method steps shown and/or described in connection with any disclosed form or embodiment of the invention may be incorporated in any other disclosed or described or suggested form or embodiment as a general matter of design choice. It is the intention, therefore, to be limited only as indicated by the scope of the claims appended hereto.