STATOR, ELECTRIC MACHINE, CONNECTION BRIDGE AND METHOD FOR MANUFACTURING A STATOR
20230369932 ยท 2023-11-16
Inventors
- Massimo Ponzio (Colle Val d' Elsa, Siena, IT)
- Rubino Corbinelli (Staggia Senese, IT)
- Daniele Nocciolini (Firenze, IT)
Cpc classification
H02K2203/09
ELECTRICITY
H02K3/38
ELECTRICITY
H02K15/0068
ELECTRICITY
H02K3/50
ELECTRICITY
International classification
H02K15/00
ELECTRICITY
H02K3/50
ELECTRICITY
Abstract
The invention relates to a stator which may be used within an electric rotating machine and a method for manufacturing a stator. The stator (200) comprises a stator core (100) having a plurality of slots (101, 101a, 101b) arranged in circumferential direction (C) of the stator core (100), a plurality of conductors (102, 103) forming a stator winding, wherein at least a radially outer conductor (102) and a radially inner conductor (103) are arranged along a radial direction (R) of each slot (101). At least one pair of a radially outer conductor (102) of a first slot (101a) and a radially inner conductor (103) of a second slot (101b) circumferentially spaced from the first slot (101a) is electrically connected by a connection bridge (1). The connection bridge (1) comprises a first base element (2) and a second base element (3) connected to a respective conductor (102, 103) and a top element (4) being connected to the base elements (2, 3) and preferably arranged in a larger distance from the stator core (100) than the first base element (2) and second base element (3).
Claims
1-19. (canceled)
20. A stator for a rotating electric machine, comprising: a stator core having a plurality of slots arranged in a circumferential direction of the stator core; and a plurality of conductors forming a stator winding, wherein: at least a radially outer conductor and a radially inner conductor are arranged along a radial direction of each slot, axial end sections of the conductors protruding from the slots on at least one side of the stator core; at least one pair of a conductor of a first slot and a conductor of a second slot circumferentially spaced from the first slot is electrically connected by a connection bridge; and the connection bridge comprises: a first base element and a second base element connected to the axial end sections of a respective conductor, and a top element connected to the base elements.
21. The stator according to claim 20, wherein at least one pair of the conductor of the first slot is a radially outer conductor and the conductor of the second slot a radially inner conductor.
22. The stator according to claim 20, wherein the top element is arranged at a larger distance from the stator core than a distance from the stator core to the first base element and the second base element.
23. The stator according to claim 20, wherein the first base element embraces at least one of a lateral part and an outwardly facing part of the outer surface of the axial end section of the radially outer conductor.
24. The stator according to claim 20, wherein the second base element embraces at least one of a lateral part or an inwardly facing part of the outer surface of the axial end section of the radially inner conductor.
25. The stator according to claim 20, wherein: the top element comprises a first connection end having a contact face in contact with a face of the first base element; and the top element comprises a second connection end having a contact face in contact with a face of the second base element.
26. The stator according to claim 25, wherein: an axial contact face of the first connection end of the first connection end is in contact with an axial face of the first base element; and an axial contact face of the second connection end of the top element is in contact with an axial face of the second base element.
27. The stator according to claim 20, the stator comprising a plurality of connection bridges, wherein one or more of: first base elements are arranged within a first region of a lower holding member; second base elements are arranged within a second region of a lower holding member; or top elements are arranged within an upper holding member.
28. The stator according to claim 27, wherein one or more of the lower holding member or the upper holding member is annular.
29. The stator according to claim 27, wherein one or more of the lower holding member or the upper holding member comprises a body made of resin.
30. The stator according to claim 27, wherein one or more of the lower holding member or the upper holding member comprises at least one reference mark.
31. The stator according to claim 27, wherein one or more of the lower holding member or the upper holding member comprises at least one spacer element for defining an axial distance to one or more of the stator core or an axially adjacent holding member.
32. The stator according to claim 26, wherein the lower holding member comprises chamfered openings for introducing axial end sections of the conductors.
33. The stator according to claim 20, wherein one or more of the first base element or the second base element comprises anchoring openings at a lateral side.
34. The stator according to claim 27, wherein: the first base element is arranged on a first axial level; and the second base element is arranged on a second axial level different from the first axial level.
35. The stator according to claim 34, wherein the second base element is arranged closer to the stator core than the first base element.
36. The stator according to claim 20, wherein a number of one or more of first base elements or second base elements are connected to each other to form a termination connection on a termination side of the stator core.
37. The stator according to claim 20, wherein on a termination side of the stator core a number of top elements are connected by termination bridges.
38. The stator according to claim 20, wherein the conductors are stranded wires.
39. An electric machine comprising a stator, the stator comprising: a stator core having a plurality of slots arranged in a circumferential direction of the stator core; and a plurality of conductors forming a stator winding, wherein at least a radially outer conductor and a radially inner conductor are arranged along a radial direction of each slot, axial end sections of the conductors protruding from the slots on at least one side of the stator core; wherein: at least one pair of a conductor of a first slot and a conductor of a second slot circumferentially spaced from the first slot is electrically connected by a connection bridge; and the connection bridge comprises: a first base element and a second base element connected to the axial end sections of a respective conductor, and a top element connected to the base elements.
40. A connection bridge for connecting conductors arranged in slots arranged in a circumferential direction of a stator core of a stator, wherein the connection bridge comprises: a first base element and a second base element being connectable to respective axial end sections of the conductors; and a top element connectable or connected to the base elements.
41. The connection bridge according to claim 40, wherein the top element comprises two contact faces for contacting respective faces of the first base element and the second base element.
42. A method for manufacturing a stator for a rotating electric machine, the rotating electric machine comprising a stator core which has a plurality of slots arranged in a circumferential direction of the stator core and a plurality of conductors forming a stator winding, wherein at least a radially outer conductor and a radially inner conductor are arranged along a radial direction of each slot, the axial end sections of the conductors protruding from the slots on at least one side of the stator core, the method comprising: connecting at least one first base element to an axial end section of a radially outer conductor; connecting at least one second base element to an axial end section of a radially inner conductor; connecting a top element to the first base element; and connecting the top element to the second base element.
43. The method according to claim 42, further comprising one or more of: connecting the first base element to the axial end section of the radially outer conductor by axial welding; or connecting the second base element to the axial end section of the radially inner conductor by axial welding.
44. The method according to claim 42, furthering comprising one or more of: connecting the top element to the first base element by welding from a radial outer side; or connecting the top element is connected to the second base element by welding from a radial inner side.
45. The method according to claim 42, comprising one or more of: providing a first region of a lower holding member carrying first base elements and placing the first lower holding member close to the axial end sections of radially outer conductors; providing a second region of a lower holding member carrying second base elements and placing the second lower holding member to the axial end sections of radially inner conductors; or providing an upper holding member carrying top elements and placing the upper holding member close to the first region of the lower holding member and the second region of the lower holding member after having connected the first base elements to the ends of radially outer conductors and the second base elements to the axial end sections of the radially inner conductor.
46. The method according to claim 45, further comprising: positioning radially inner conductors and radially outer conductors in slots of the stator core, such that the axial end sections protrude from the first axial side and the second axial side of the stator core; connecting axial end sections of the radially outer conductors with first base elements arranged in a first region of a lower holding member and axial end sections of radially inner conductors with second base elements arranged in a second region of a lower holding member on the first axial side; connecting axial end sections of the radially outer conductors with first base elements arranged in a first region of a lower holding member and axial end sections of radially inner conductors with second base elements arranged in a second region of a lower holding member on the second axial side; and connecting upper holding members to the lower holding members on both sides, and by welding top elements of the upper holding member to second base elements of the second region of the lower holding member.
47. The method according to claim 45, further comprising: providing radially inner conductors in a stator template; connecting axial end sections of the radially inner conductors on a first axial side with second base elements arranged in a second region of a lower holding member, which is fixed to a first region of a lower holding member of the opposite termination side, forming an inner subassembly; providing radially outer conductors in a stator template; connecting axial end sections of radially outer conductors with first base elements arranged in a first region of a lower holding member on a second axial side, which is connected to a second region of a lower holding member on the termination side, forming an outer subassembly; introducing the conductors of the inner subassembly into respective slots the stator core from a first axial side; introducing the conductors of the outer subassembly into the respective slots of the stator core from a second axial side opposite to the first axial side; connecting axial end sections of the radially outer conductors on the first axial side with the first base elements arranged in the first region of the lower holding member of the inner subassembly; connecting axial end sections of the radially inner conductors on the second axial side with second base elements arranged the second region of the lower holding member of the outer subassembly; and connecting upper holding members to lower holding members on both axial sides by welding top elements of the upper holding member to base elements of the first region of the lower holding member, and by welding top elements of the upper holding member to base elements of the second lower region of the holding member.
Description
[0113] The invention will now be described with reference to preferred embodiments and the drawings, which show:
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[0120]
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[0125]
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[0127]
[0128]
[0129] Each slot 101 contains a radially outer conductor 102 and a radially inner conductor 103 (see
[0130] The conductors 102, 103 are connected by connection bridges 1.
[0131] The connection bridges 1 each comprise a first base element 2, a second base element 3 and a top element 4 being connected to the base elements 2, 3 at connection ends 5, 8.
[0132] The base elements 2, 3 are arranged close to the stator core 100, whereas the top elements 4 are arranged on top of the first and second base elements 2, 3 and thus at a larger distance 17 from the stator core 100 than the first base elements 2 and the second base elements 3.
[0133] As can be seen in
[0134] Alternatively, the connection bridge 1 may connect an inner conductor 103 of a first slot 101a and an inner conductor 103 of a second slot 101b, not shown in the figures.
[0135]
[0136] Axial end sections 104, 105 of the conductors 102, 103 protrude from the slots 101, which are only schematically shown.
[0137] The first base elements 2 embrace a lateral part 108 and an outwardly facing part 109 of the surface of the axial end section 104 of radially outer conductors 102.
[0138] The second base elements 3 embrace a lateral part 110 and an inwardly facing part 111 of the surface of the axial end section 105 of the radially inner conductors 103.
[0139] The first base elements 2 are arranged in a radially outer first region 13a of a lower annular holding member 12 and the second base elements 3 are arranged within a radially inner second region 13b of the lower annular holding member 12.
[0140] The first and second base elements 2, 3 may be connected to the inner and outer conductors 102, 103 by axially welding to form a reliable electrical connection.
[0141] The first base elements 2 comprise axial faces 7a, 7b for contacting first connection ends 5 of the top element 4 (see
[0142] Analogously the second base elements 3 have axial faces 10a, 10b for contacting a second connection end 8 of top element 4 (see
[0143] Axial faces 7a, 7b may be arranged in the same plane or, as shown in the figures, may be arranged in different planes. The same holds for the axial faces 10a, 10b. The lower axial faces 7b may be on the same axial level as the outer conductors 102 and the lower axial faces 10b may be on the same axial level as the inner conductors 103.
[0144] An axial welding tool 120 (see
[0145] Analogously an axial welding tool 120 (see
[0146] The top elements may be connected to the first and second base elements 2, 3 by radially welding to form a reliable electrical connection.
[0147]
[0148] The first base elements 2 are arranged within the first region 13a of the lower annular holding member 12 and the second base elements 3 are arranged within the second region 13b of the lower annular holding member 12.
[0149] A radial welding tool 121 (see
[0150] All first base elements 2 and all second base elements 3 may be positioned with respect to the outer conductors 102 (see
[0151] The top elements 4 are arranged within an upper annular holding member 14.
[0152] The holding members 12 and 14 are made of resin, such as thermal resistant polyamide PA, such as PIC.
[0153] The upper holding member 14 may positioned on the first lower holding member 12, such that all top elements 4 are arranged on respective first and second base elements 2, 3 in one step. To facilitate circumferential alignment the lower holding member 12 and the upper holding member 14 each comprise a radially extending protrusion 15.
[0154] There is a distance 6 between the first region 13a of the lower holding member 12 and the upper holding member 14 and a distance 9 between the second region 13b of the lower holding member 12 and the upper holding member 14. In this embodiment the distances 6, 9 are equal.
[0155] The connection areas 24 between the axial faces 7a (see
[0156] Accordingly, the connection areas 25 between the axial faces 10a (see
[0157] The distances 6, 9 allow a welding tool 121 (see
[0158] In the embodiment of
[0159] The axial faces 7a of the first base elements 2 and the axial faces 10a of the second base elements 3 are arranged on the same respective axial levels as for example shown in
[0160] In an alternative embodiment, axial end sections 104, 105 of the inner and of the outer conductors may be arranged at different axial levels as shown in
[0161]
[0162] In this embodiment the upper holding member 14 has a stepped shape as the top elements 4 have to be connected as well to the first base elements 2 as to the second base elements 3 which are arranged at different axial levels.
[0163] Connection areas 24, 25 are arranged between the lower holding member 12 and the upper holding member 14 such that a radial welding tool may have access to the connection areas 24, 25. In this embodiment the connection areas 24 and 25 are not on the same axial level.
[0164]
[0165] Accordingly the first base elements 2 which embrace the parts of the axial end sections 104 of the outer conductors 102 are more distanced from the stator core than the second base elements 3, which embrace parts of the axial end sections 105 of the inner conductors 103.
[0166] The first base elements 2 comprise anchoring openings 23. Anchoring openings 23 may also be arranged in the second base elements 3 (not explicitly shown in the figure).
[0167] Resin of a body 11 of the lower holding member 12 (indicated by dashed lines) may enter the anchoring openings to provide a tight and reliable fixation between the first base elements 2 and the lower holding member 12.
[0168] The body 11 of the lower holding member 12 may comprise chamfered openings 22 (in the figure schematically indicated for one opening with dashed lines) for introducing the axial end sections 104.
[0169]
[0170] Preferably, the lower holding member 12 comprises three equally distanced axially extending protrusions 16. These protrusions 16 provide for a defined horizontal orientation of the lower holding member 12.
[0171]
[0172] One of the first base elements 2 and a radially adjacent second base element 3 are made as a single piece which is a part of the termination connection 18. The termination connection 18 provides for an external electrical connection.
[0173] Similarly, a termination connection 18 may be arranged inside the stator core 100 (not shown in the figures).
[0174] Steps for a first method used for forming the first embodiment of a stator 200 are schematically shown in
[0175] Alternatively, conductors 102, 103 are directly introduced into a stator core 100. Alternatively, stator core templates 112, 113 (see
[0176] Radially outer conductors 102 and radially inner conductors 103 are positioned in slots 101 of a stator core 100, such that the axial end sections 104, 105 protrude from a first axial side 107 and a second axial side 106 (see
[0177] In a further step axial end sections 104 of the radially outer conductors 102 are connected with first base elements 2 and ends 105 of radially inner conductors 103 are connected with second base elements 3.
[0178] The connection can be made with an axially directed laser tool 120.
[0179] The first base elements 2 may be arranged in an annular first region 13a of a lower holding member 12 and the second base elements 3 may be arranged in an annular second region 13b of the lower holding member 12. In the shown embodiment all base elements 2, 3 are arranged in a common lower holding member 12.
[0180] In a further step top elements of connection bridges (not shown in this figures) arranged in an annular upper holding member 14 may be connected to the base elements 2, 3 arranged in the lower holding member 12 at a first axial side 107 of the stator core.
[0181] The connection can be made with a radially directed laser tool 121.
[0182] Preferably similar steps are also performed on the second axial side 106 of the stator core 100.
[0183] For manufacturing the second embodiment of a stator, in a second method a first inner subassembly 20 (see
[0184]
[0185] The inner conductors 103 are connected to second base elements 3 arranged in a second region 13b of a lower holding member 12. The connection may be formed by axial welding. The lower holding member 12 also carries first base elements 2 which are arranged in the radial outer second region 13b of the lower holding member 12 and which are not yet connected to a conductor.
[0186]
[0187] The outer conductors 102 are connected to first base elements 2 arranged in a first region 13a of a lower holding member 12. The connection may be formed by axial welding. The lower holding member 12 also carries second base elements 3 which are arranged in radially inner region 13b of the lower holding member 12 and which are not yet connected to a conductor.
[0188]
[0189] The conductors 103 of the inner subassembly 20 are introduced into the slots 101 of a stator core 100 from a first axial side 107.
[0190] The conductors 102 of the outer subassembly 21 are introduced into the slots 101 of a stator core 100 from a second axial side 106.
[0191] The radially outer conductors 102 may then be connected to the first base elements 2 of the inner subassembly 20 on the first axial side 107 and the radially inner conductors 103 may be connected to the second base elements 3 (see
[0192] In a further step, not shown in the figure, upper holding members may be placed adjacent to the lower holding members on both sides 106, 107 of the stator core 100 and top elements may be welded to base elements.