Stator with pins for an electric machine
11489389 · 2022-11-01
Assignee
Inventors
Cpc classification
International classification
Abstract
A stator for an electric machine includes a plurality of pins, which are arranged on concentric circles at different distances to a stator center in slots in the stator, and each concentric circle forms a layer. In each case four pins in different layers are serially connected to one another and form a winding, a first pin of the winding is located in a first slot in the 4n−3 layer, wherein n is an integer, a second pin of the winding is located in a second slot in the 4n−2 layer, wherein the second slot has a first radial distance to 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 layer, and a fourth pin of the winding is located in the second slot in the 4n−1 layer.
Claims
1. A stator (1) for an electric machine (100) comprising: a plurality of pins (22, 23, 24, 25), which are arranged on concentric circles at different distances to a stator center (M) in slots (51-58, 71-78, 91-98) in the stator (1), and each concentric circle forms a layer (L1, L2, L3, L4), wherein in each case four pins (22, 23, 24, 25) in different layers (L1, L2, L3, L4) are serially connected to one another and form a winding (41), a first pin (25) of the winding (41) is located in a first slot (53) in the 4n−3 layer (L1), wherein n is an integer, a second pin (24) of the winding (41) is located in a second slot (94) in the 4n−2 layer (L2), wherein the second slot (94) has a first radial distance (13) to the first slot (53) in a first circumferential direction of the stator (1), a third pin (23) of the winding (41) is located in the first slot (53) in the 4n layer (L4), a fourth pin (22) of the winding (41) is located in the second slot (94) in the 4n−1 layer (L3).
2. The stator (1) according to claim 1, wherein the stator (1) has a first end face (7) and a second end face (9); and the first pin (25) and the second pin (24) are connected to one another on the second end face (9) by means of a first connection type (61); the second pin (24) and the third pin (23) are connected to one another on the first end face (7) by means of a second connection type (62); the third pin (23) and the fourth pin (22) are connected to one another on the second end face (9) by means of a third connection type (63); wherein the first, second, and third connection types differ from one another.
3. The stator (1) according to claim 1, wherein the stator (1) has at least two windings (41, 42, 43) and at least the fourth pin (22) in the second slot (94) is connected to a fifth pin (26) in the 4n−3 layer (L3) in a fifth slot (55) by means of a fourth connection type (64).
4. Stator (1) according to claim 3, wherein a a second distance (19) that is greater than the first radial distance (13), wherein the second distance lies between second slot (94) and third slot (55).
5. The stator (1) according to claim 3, wherein the stator (1) has a plurality of windings (41, 42), which extend across the entire circumference of the stator (1) and thereby form a partial coil.
6. The stator (1) according to claim 5, wherein one pin (28, 28a, 31, 31a) in each case from two partial coils are connected to one another by means of a fifth connection type (65) or a sixth connection type (66) and form a coil (201, 202).
7. The stator (1) according to claim 6, wherein four pins of a coil completely occupy four slots (92, 94, 96, 98).
8. The stator (1) according to claim 7, wherein the partial coils form six coils, and these are assigned to three phases in such a way that in each case two coils, which are assigned to a same phase, are located in three adjacent slots (51-58, 71-78, 91-98) and thereby in each case two different layers of the two outer slots (71-78, 91-98) are occupied by pins from other phases.
9. The stator (1) according to claim 8, wherein in each case one output (81, 87, 101, 107, 111, 117) and one output (83, 103, 113, 85, 105, 115) of the at least two coils (201, 202) are connected to one another, and the two coils (201, 202) are thus switched in parallel, and, in particular, are assigned to one phase.
10. A vehicle (403) with an electric machine (401) with a stator (1) according to claim 1.
Description
DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18) Pin 21 is connected to a pin 27 in a slot 92 by means of a third connection type 63, depicted as a solid line. Pin 27 is located in layer L3. Pin 22 is connected to a first pin 25 in a first slot 53 by means of a fourth connection type 64, depicted as a short dashed line. First pin 25 lies in layer L1.
(19) First pin 25 is connected to a second pin 24 via a first connection type 61, depicted as a dotted line. Second pin 24 lies in a second slot 94. A first distance 13, which is one slot shorter than standard distance 11 from
(20) Second pin 24 is connected to a third pin 23 in first slot 53 by means of a second connection type 62, depicted as a dashed line. Third pin 23 lies in layer L4. There is thus still space in first slot 53 for two other pins between first pin 25 and third pin 23.
(21) Third pin 23 is connected to a fourth pin 22 in second slot 94 by means of a third connection type 63, depicted as a solid line. Fourth pin 22 lies in layer L3. Second pin 24 and fourth pin 22 lie in the center of the slot, so that there is still space for two other pins on stator inner layer L4 and on stator outer layer L1.
(22) The connection of the first, second, third, and fourth pins forms a first winding 41.
(23) Fourth pin 22 is connected to a fifth pin 26 in a third slot 55 via fourth connection type 64. A second distance 19, which is one slot shorter than standard distance 11, lies between second slot 94 and third slot 55. Fifth pin 26 lies in layer L1. At fifth pin 26, the previously-described serial connection of the consecutive pins in the stator begins again, wherein fifth pin 26 is similar to first pin 25 with an offset of the slot by 90 degrees.
(24) The serial connection of fifth pin 26 to other pins in another slot 96 forms a second winding 42. First, second, and third connection types 61, 62, 63 between these pins is identical to the respective first, second, and third connection types 61, 62, 63 of the pins of the first winding 41.
(25) The two windings 41, 42 are connected by fourth connection type 64. Due to the continuation of the serial connection, a third winding 43 is formed in two other slots 57 and 98. Windings 41, 42, 43 are each connected using fourth connection type 64. Fourth connection type 64 between the respective windings is thus identical. First, second, and third connection types 61, 62, 63 between the pins of windings 43 are also identical to the first, second, and third connection types 61, 62, 63 of the first and second windings 41, 42.
(26) Fourth winding 44 is also connected to third winding 43 via fourth connection type 64; however, this winding lacks a connection of the second connection type. Pin 28 represents a second end pin and winding 44 arises according to
(27) Four windings 41, 42, 43, 44 form a first partial coil by way of one circuit clockwise about stator 1. First pin 21 has an input 81 for connecting to an energy source. The partial coil ends with second end pin 28 of winding 44.
(28)
(29) Pins 31, 32, 33, 34, 35, 38 are connected in the same way as pins 22, 23, 24, 25, 26, 28 of
(30) Four windings 45, 46, 47, 48 form a second partial coil by way of one circuit counterclockwise about stator 1. The partial coil begins with a pin 31, which is a third end pin. The partial coil ends with pin 38 of winding 48. Last pin 38 of winding 48 thus represents a fourth end pin.
(31) Fourth end pin 38 additionally has an output 83 for connecting to an energy source. The input and output may naturally also be reversed.
(32)
(33) The two partial coils thus form a first coil 201 with an input 81 and an output 83 after two radial circuits in different respective directions about the stator. A third distance 17, depicted in the figure, is one slot long.
(34) The pins of coil 201 occupy all layers in four slots 92, 94, 96, 98. These four slots 92, 94, 96, 98 are respectively rotated by 90 degrees and have twice the standard distance, or the sum of first distance 13 and second distance 19.
(35)
(36) First pin 25a is connected to a second pin 24a via a first connection type 61, depicted as a dotted line. Second pin 24a lies in a second slot 74. A first distance 13, which is one slot shorter than standard distance 11 from
(37) Second pin 24a is connected to a third pin 23a in first slot 93 by means of a second connection type 62, depicted as a dashed line. Third pin 23a lies in layer L4. There is thus still space in first slot 93 for two other pins between first pin 25a and third pin 23a.
(38) Third pin 23a is connected to a fourth pin 22a in second slot 74 by means of a third connection type 63, depicted as a solid line. Fourth pin 22a lies in layer L3. Second pin 24a and fourth pin 22a lie in the center of second slot 74, so that there is still space for two other pins on stator inner layer L4 and on stator outer layer L1.
(39) The connection of the first, second, third, and fourth pins forms a first winding 41.
(40) Fourth pin 22a is connected to a fifth pin 26a in a third slot 95 via fourth connection type 64. A second distance 19, which is one slot longer than standard distance 11, lies between second slot 74 and third slot 95. Fifth pin 26a lies in layer L1. At fifth pin 26a, the previously-described serial connection of the consecutive pins in the stator begins again, wherein fifth pin 26a is similar to first pin 25a with an offset of the slot by 90 degrees.
(41) The serial connection of fifth pin 26a to other pins in another slot 76 forms a second winding 42. First, second, and third connection types 61, 62, 63 between these pins is identical to respective first, second, third connection types 61, 62, 63 of the pins of first winding 41.
(42) The two windings 41, 42 are connected by fourth connection type 64. Due to the continuation of the serial connection, a third winding 43 is formed in two other slots 97 and 78. Windings 41, 42, 43 are each connected using fourth connection type 64. Fourth connection type 64 between the respective windings is thus identical. First, second, and third connection types 61, 62, 63 between the pins of windings 43 are also identical to first, second, and third connection types 61, 62, 63 of first and second windings 41, 42.
(43) Fourth winding 44 is also connected to third winding 43 via fourth connection type 64; however, this winding lacks a connection of the second connection type. Pin 28a represents a sixth end pin and winding 44 arises according to
(44) Four windings 41, 42, 43, 44 form a first partial coil by way of one circuit clockwise about stator 1. Fifth end pin 21a has an input 87 for connecting to an energy source. The partial coil ends with sixth end pin 28a of winding 44.
(45)
(46) The pins are, moreover, arranged on concentric circles, thus layers, wherein the concentric circles are not marked for the sake of a better depiction. It depicts which pins, depicted as black squares on a white background, are serially connected to one another and form a second partial coil of a second coil 202.
(47) Pins 31a, 32a, 33a, 34a, 35a, 38a are connected in the same way as pins 22a, 23a, 24a, 25a, 26a, 28a of
(48) Four windings 45, 46, 47, 48 form a second partial coil by way of one circuit counterclockwise about stator 1. The partial coil begins with a pin 31a, which is a seventh end pin. The partial coil ends with pin 38a of winding 48. Last pin 38a of winding 48 thus represents an eighth end pin.
(49) Eighth end pin 38a additionally has an output 85 for connecting to an energy source. The input and output may also naturally be reversed.
(50)
(51) Sixth end pin 28a of fourth winding 44 of the first partial coil in slot 72, layer L2 and seventh end pin 31a of first winding 45 of the second partial coil in slot 91, layer L3 are connected using a sixth connection type 66. This connection forms fourth winding 44, which is mentioned in the description of
(52) The two partial coils thus form a second coil 202 with an input 87 and an output 85 after two radial circuits in different respective directions about the stator. A third distance 17 depicted in the figure is one slot long.
(53) The pins of coil 202 occupy all layers in four slots 91, 93, 95, 97. These four slots are respectively rotated by 90 degrees and have twice the standard distance, or the sum of first distance 13 and second distance 19.
(54)
(55) Thus, two parallel coils are shown, which each consist of two partial coils. Inputs and outputs of the coils are likewise shown. Input 81 of the first coil is located at slot 51 and output 83 at slot 92. Input 87 of the second coil is located at slot 91 and output 85 at slot 52. The inputs and outputs of both coils thus lie in adjacent slots.
(56)
(57)
(58)
(59)
(60)
LIST OF REFERENCE NUMERALS
(61) 1 Stator 2, 3 Pin 7 First end face 9 Second end face 11 Standard distance 13 First distance 17 Third distance 19 Second distance 21 First end pin 28 Second end pin 31 Third end pin 38 Fourth end pin 21a Fifth end pin 28a Sixth end pin 31a Seventh end pin 38a Eighth end pin 22-27, 22a-27a Pins 32-37, 32a-37a Pins 41-48 Winding 51-58 Slots 61 First connection type 62 Second connection type 63 Third connection type 64 Fourth connection type 65 Fifth connection type 66 Sixth connection type 71-78 Slots 81, 87, 101, 107, 111, 117 Input 83, 85, 103, 105, 113, 115 Output 91-98 Slots 201 First coil 202 Second coil 401 Electric machine 403 Vehicle 405 Inverter L1, L2, L3, L4 Layer M Stator center