STATOR WITH PINS AND A PARALLEL CONNECTION FOR AN ELECTRIC MACHINE
20220376591 · 2022-11-24
Assignee
Inventors
Cpc classification
International classification
Abstract
A stator for an electric machine has a plurality of pins, which are arranged on concentric circles at different distances from a stator center point in slots and each concentric circle forms a layer, wherein four pins in different layers are respectively connected to one another in series and form a winding, a first pin of the winding is located in a first slot in the 4n−1 layer, wherein n is a natural number, a second pin of the winding is located in a second slot in the 4n layer, wherein the second slot is at a first radial distance from the first slot in a first circumferential direction of the stator, a third pin of the winding is located in the first slot in the 4n−3 layer, a fourth pin of the winding is located in the second slot in the 4n−3 layer.
Claims
1. A stator for an electric machine, comprising: a plurality of pins arranged on concentric circles at different distances from a stator center point in slots wherein each concentric circle forms a layer; wherein four pins in different layers are respectively connected to one another in series and form a winding, a first pin of the winding is located in a first slot in the 4n−1 layer, wherein n is a natural number, a second pin of the winding is located in a second slot in the 4n layer, wherein the second slot is at a first radial distance from the first slot in a first circumferential direction of the stator, a third pin of the winding is located in the first slot in the 4n−3 layer, and a fourth pin of the winding is located in the second slot in the 4n−3 layer.
2. The stator according to claim 1, further comprising: a first end face and a second end face, wherein the first pin and the second pin are connected to one another on the second end face by means of a first type of connection, the second pin and the third pin are connected to one another on the first end face means of a second type of connection, the third pin and the fourth pin are connected to one another on the second end face by means of a third type of connection, wherein the first, second and third types of connection differ from one another.
3. The stator according to claim 1, wherein the stator has at least two windings and at least the fourth pin in the second slot is connected to a fifth pin in the 4n−1 layer in a third slot by means of a fourth type of connection.
4. The stator according to claim 3, further comprising: a plurality of windings, which extend over the entire circumference of the stator and thereby form a part-coil.
5. The stator according to claim 4, wherein respective pins of two part-coils are connected to one another by means of a fifth type of connection.
6. The stator according to claim 5, wherein at least two part-coils form a coil.
7. The stator according to claim 6, wherein the part-coils form six coils and six phases are assigned to them in such a way that two coils, which are assigned to different phases, are respectively located in adjacent slots.
8. The stator according to claim 6, wherein respective inputs of a pin of two coils are connected to one another by means of a sixth type of connection
9. The stator according to claim 8, wherein respective outputs of a pin of the two coils are connected to one another and the two coils as a result are connected in parallel, and in particular assigned to one phase.
10. The stator according to claim 1, wherein the second type of connection comprises a first double pin, which is formed from the second pin and the third pin, wherein the first double pin has two inwardly bent pin feet with a respective weld point and bridges a first radial distance.
11. The stator according to claim 1, wherein the fourth type of connection comprises a second double pin, which is formed from the fourth pin and the fifth pin, wherein the second double pin has two outwardly bent pin feet with a respective weld point and bridges a first radial distance.
12. The stator according to claim 1, wherein the fifth type of connection comprises a third double pin, which is formed from a second end pin and a third end pin, wherein the third double pin has two outwardly bent pin feet with a respective weld point and bridges a second radial distance.
13. The stator according to claim 1, wherein a seventh type of connection comprises a fourth double pin, which is formed from a sixth end pin and a seventh end pin, wherein the fourth double pin has two inwardly bent pin feet with a respective weld point and bridges a second radial distance.
14. The stator according to claim 1, wherein a single pin comprises a fourth end pin or a fifth end pin and has a pin foot which is bent clockwise and has a weld point.
15. The stator according to claim 1, wherein a single pin comprises a first end pin or an eighth end pin and has a pin foot which is bent counterclockwise and has a weld point.
16. The stator according to claim 1, wherein the first type of connection is formed by a welded connection between a first weld point at the pin foot of the second double pin or of the first single pin or of the third double pin and a second weld point at the pin foot of the first double pin or of the fourth double pin or of the fourth single pin.
17. The stator according to claim 1, wherein the third type of connection is formed by a welded connection between a third weld point at the pin foot of the second double pin or of the third double pin or of the second single pin and a second weld point at the pin foot of the second double pin or of the fourth double pin or of the third single pin.
18. A vehicle having an electric machine with a stator according to claim 1.
Description
DESCRIPTION OF THE FIGURES
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
[0046]
[0047]
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
[0057]
[0058]
[0059]
[0060] The fourth pin 24 is connected to a fifth pin 25 in the layer L3 in a third slot 53 via a fourth type of connection 64, illustrated as a dashed line. With the fifth pin 25, the above described. serial connection of the subsequent pins in the stator begins again, with the fifth pin 25 being similar to the first pin 21 but with the slot being offset by 90 degrees. The first pin 21, however, is a first end pin 21 and has an input, see
[0061] The serial connection of the fifth pin 25 to further pins in the slots 53 and 54 forms a second winding 42. The first, second and third types of connection 61, 62, 63 between these pins are identical to the respective first, second and third types of connection 61, 62, 63 of the pins of the first winding 41.
[0062] The two windings 41, 42 are connected by the fourth type of connection 61. The continuation of the serial connection forms the third winding 43 in the slots 55, 56 and the fourth winding 44 in the slots 57, 58. The windings 42, 43, 44 are respectively connected by means of the fourth type of connection 64. The fourth type of connection 64 between the respective windings is therefore identical. It is also the case that the first, second and third types of connection 61, 62, 63 between the pins of the windings 43, 44 are identical to the first, second and third types of connection 61, 62, 63 of the first and second windings 41, 42.
[0063] The four windings 41, 42, 43, 41 form a first part-coil by way of a clockwise circuit around the stator 1. The last pin of the part-coil is in turn a second end pin 26. The slots are at an identical first distance 71 from one another.
[0064]
[0065] The pins 31, 32, 33, 34, 35 are connected in the same way as the pins 21, 22, 23, 24, 25 of
[0066] The fourth pin in the slot 98 on the layer L1 of the winding 43 is a fourth end pin 36 and has an output 83 for the connection of an energy source. The four windings 45, 46, 47, 48 form a second part-coil.
[0067]
[0068]
[0069]
[0070]
[0071]
[0072] The inputs 111 and outputs 113 of the fifth coil and inputs 117 and outputs 115 of the sixth coil are likewise shown. The inputs and outputs of the two coils are thus in the same respective slot.
[0073]
[0074]
[0075] The second part coil is formed by connecting the pins, shown as horizontal dashes, by means of the solid-line arrows. The part-coil begins with the third end pin 31 and ends with the fourth end pin 36. The fourth end pin is connected to an inverter, for example, by way of the output 83. The fifth type of connection 65 is located between the second end pin 26 of the first part-coil and the third end pin 31 of the second part coil. The two end pins 31, 26 and the fifth type oil connection 65 are shown in
[0076] Pin 20 of the second coil 202 constitutes a fifth end pin 20 and has an input 87. A serial connection of the pins, shown as horizontal dashes, by means of the dashed-line arrows almost completes a single radial circuit around the stator and forms the first circuit, which comprises the first part-coil. The fifth end pin 21 is at the beginning of the second part-coil and the sixth end pin 28 is at the end.
[0077] The second part-coil is formed by connecting the pins, shown as horizontal dashes, by means of the solid-line arrows. The part-coil begins with the seventh end pin 38 and ends with the eighth end pin 30. The eighth end pin 30 is connected to an inverter, for example, by way of the output 85. The seventh type of connection 67 is located between the sixth end pin 28 of the first part-coil and the seventh end pin 38 of the second part-coil. The two end pins 28, 33 and the seventh type of connection 67 are shown in
[0078] Both circuits of the second coil 201 take place in a second direction, for example anticlockwise. The circulation directions of the two coils may be selected freely, but they must be opposite directions.
[0079]
[0080] The left-hand single pin 219 is used on layer 1 for the fourth end pin 36. At the bottom end, the end pin has a pin foot 63a with a weld point 225. The output 83, 103, 113 is located at the top end.
[0081] The right-hand single pin 217 is used on layer 3 for the first end pin 21 or first pin 21. At the bottom end, the end pin has a pin foot 61a with a weld point 221. The input 81, 101, 111 is located at the top end.
[0082]
[0083] The left-hand single pin 218 is used on layer 2 for the eighth end pin 30. At the bottom. end, the end pin has a pin foot 63b with a weld point 227. The output 85, 105, 115 is located at the top end.
[0084] The right-hand single pin 220 is used on layer 4 for the fifth end pin 20. At the bottom end, the end pin has a pin foot 61a with a weld point 223. The output 87, 107, 117 is located at the top end.
[0085]
[0086]
[0087] The first distance 71 is identical only with respect to the number of slots to be bridged. The actual spatial distance to be bridged is different, because the double pins connect different layers.
[0088]
[0089]
[0090] The various single and double pins in
[0091]
LIST OF REFERENCE SIGNS
[0092] 1 Stator [0093] 2, 21, 22, 23, 24, 25 Pin [0094] 31, 32, 33, 34, 35 Pin [0095] 5, 51, 52, 53, 54, 55, 56, Slot [0096] 57, 53, 91, 92, 93, 94, 95, Slot [0097] 96, 97, 98 Slot [0098] 7 First end face [0099] 9 Second end face [0100] 20, 21, 26, 28, 30, 31, 36, 38 End pins [0101] 41-48 Winding [0102] 61 First type of connection [0103] 62 Second type of connection [0104] 63 Third type of connection [0105] 64 Fourth type of connection [0106] 65 Fifth type of connection [0107] 66 Sixth type of connection [0108] 67 Seventh type of connection [0109] 61a, 61b, 63a, 63b Pin foot [0110] 71 First radial distance [0111] 73 Second radial distance [0112] 401 Electric machine [0113] 81, 87, 101, 107, 111, 117 Input [0114] 83, 85, 103, 105, 113, 115 Output [0115] 201 First coil [0116] 202 Second coil [0117] 211, 213, 214, 215 Double pin [0118] 217, 213, 219, 220 Single pin [0119] 221, 223, 225, 227 Weld point [0120] 403 Vehicle [0121] 405 Inverter [0122] L1, L2, L3, 54 Layer [0123] M Stator center point