METHOD FOR WINDING A CONCENTRATED COIL FOR AN ELECTRIC MACHINE
20220190699 · 2022-06-16
Inventors
Cpc classification
International classification
Abstract
A method for winding a coil for electric machines, and a coil wound according to this method. Wherein the method comprises the following steps: placing a wire against a form, leaving a first length of the wire and a second length of the wire extending from the form, wherein the first length has a first end and the second length has a second end; winding the first length in a first direction round the form, such that the first end of the first length is ending in an outer layer of the plurality of layers; winding the second length in a second direction round the form, wherein the second direction is opposite the first direction, wherein the second end of the second length is ending in an outer layer of the plurality of layers, wherein all layers and levels of the coil are filled.
Claims
1. A method for winding a coil (100) for electric machines, wherein the coil (100) is arranged with a plurality of layers and a plurality of levels, wherein the method comprises the following steps: placing a wire against a form (5), leaving a first length (4) of the wire and a second length (6) of the wire extending from the form (5), wherein the first length (4) has a first end (1) and the second length (6) has a second end (2); winding the first length (4) in a first direction round the form (5), such that the first end (1) of the first length (4) is ending in an outer layer of the plurality of layers; winding the second length (6) in a second direction round the form (5), wherein the second direction is opposite the first direction, wherein the second end (2) of the second length (6) is ending in an outer layer of the plurality of layers, wherein all layers and levels of the coil are filled.
2. A method according to claim 1, further comprising a step for deciding on a coil winding geometry.
3. A method according to claim 1, further comprising a step for calculating the first length (4) and the second length (6) of the wire adapted for the decided coil winding geometry, and such that the first length (4) and the second length (6) are together a total length of the wire.
4. A method according to claim 1, wherein winding the first length (4) comprises rotating the form (5) while the second length is fasten to the form (5) using fastening means (8).
5. A method according to claim 1, wherein winding the second length (6) comprises rotating the form (5) while the first length (4) is already wound around and hold fast around the form (5).
6. A method according to claim 1, wherein winding the second length (6) comprises rotating the form (5) while the first length is fasten to the form (5) using fastening means (9).
7. A method according to claim 1, wherein winding the second length (6) comprises revolving means (10) for holding the end of the second length (6) around the form (5).
8. A method according to claim 1, wherein winding the first length (4) comprises revolving means (10′) for holding the end of the first length (4) around the form (5).
9. A method according to claim 1, wherein winding the second length (6) is done in a first stage, and winding the first length (4) is done in a second stage.
10. A method according to claim 1, wherein winding the first (4) and second (6) lengths comprises filling the plurality of layers and the plurality of levels such that all layers have an equal number of levels.
11. A coil (100) wound using the method according to claim 1, comprising a wire with a first end (1) and a second end (2) and a form (5), wherein the coil (100) is configured with a plurality of layers and a plurality of levels, wherein the wire first end (1) and second end (2) are both ending in an outer layer from the plurality of layers.
12. A coil according to claim 11, wherein the wire is a solid wire.
13. A coil according to claim 11, wherein the wire comprises a plurality of sub-wire.
14. A coil according to claim 11, wherein the wire has a substantially rectangular cross section.
15. A coil according to claim 11, wherein the coil has a substantially parallelogram cross section.
16. The method according to claim 2, further comprising a step for calculating the first length and the second length of the wire adapted for the decided coil winding geometry, and such that the first length and the second length are together a total length of the wire.
17. The method according to claim 2, wherein winding the first length comprises rotating the form while the second length is fasten to the form using fastening means.
18. The method according to claim 3, wherein winding the first length comprises rotating the form while the second length is fasten to the form using fastening means.
19. The method according to claim 2, wherein winding the second length comprises rotating the form while the first length is already wound around and hold fast around the form.
20. The method according to claim 3, wherein winding the second length comprises rotating the form while the first length is already wound around and hold fast around the form.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0031] The above and further features of the invention are set forth with particularity in the appended claims and together with advantages thereof will become clearer from consideration of the following detailed description of exemplary embodiments of the invention given with reference to the accompanying drawings.
[0032] The invention will be further described below in connection with exemplary embodiments which are schematically shown in the drawings, wherein:
[0033]
[0034]
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
DESCRIPTION OF THE REFERENCE SIGNS
[0043] The following reference numbers and signs refer to the drawings:
TABLE-US-00001 100 Coil 1 First end of the coil wire 2 Second end of the coil wire 3 Spool with a storage of wire 4 First length of the wire (pulled from the spool) 5 Form (for winding the wire on) 6 Second length of the wire 7 Means for temporarily or permanently attaching the wire to the form 5 so that it does not move relative to the form surface 8 Means for temporarily fastening the second length 6 to the form 5 9 Means for temporarily fastening the first length 4 to the form 5 10 Means for holding the end of the second length 6 10′ Means for holding the end of the first length 4 11 First part of the coil 12 Second part of the coil
DETAILED DESCRIPTION OF THE INVENTION
[0044] Various aspects of the disclosure are described more fully hereinafter with reference to the accompanying drawings. This disclosure may, however, be embodied in many different forms and should not be construed as limited to any specific structure or function presented throughout this disclosure. Rather, these aspects are provided so that this disclosure will be thorough and complete, and will fully convey the scope of the disclosure to those skilled in the art. Based on the teachings herein one skilled in the art should appreciate that the scope of the disclosure is intended to cover any aspect of the disclosure disclosed herein, whether implemented independently of or combined with any other aspect of the disclosure. For example, an apparatus may be implemented or a method may be practiced using any number of the aspects set forth herein. In addition, the scope of the disclosure is intended to cover such an apparatus or method which is practiced using other structure, functionality, or structure and functionality in addition to or other than the various aspects of the disclosure set forth herein. It should be understood that any aspect of the disclosure disclosed herein may be embodied by one or more elements of a claim.
[0045] The following definitions will be used:
Layers: is a plurality of adjacent wire turns wound along the form radial direction as shown in
Levels: is defined as the number of overlapping layers round the form, as shown in
[0046] The invention will be further describe in connection with exemplary embodiments which are schematically shown in the drawings.
[0047]
[0048] In
[0049]
[0050]
[0051] Prior to starting winding the coil, it can be decided on the desired geometrical arrangement of the coil that is to be achieved. This means the user decides on the number of layers and levels to be wound with the first length 4 of the wire, and the number of layers and levels to be wound by the second length 6 of the wire. Based on the desired geometrical arrangement required, first length 4 and second length 6 are determined, which together provide the total length of the wire to make a complete coil.
[0052] According to the present invention, the wire is placed against the form 5, such that the first length 4 and the second length 6 are extending from the form 5 as shown in
[0053] The wire is wound in a two stages method.
[0054] In a first stage of the winding method, as shown in
[0055] In the first stage of the winding method, the rotation of the form 5 relative to the spool 3 can be achieved using different arrangements. In one possible alternative arrangement, as already described in the paragraph above and illustrated in
[0056] In a second stage, as shown in
[0057] In the second stage of the winding method, the motion of the form 5 relative to the means 10 can be achieved using different arrangements. In one possible alternative arrangement, as already described in the paragraph above and illustrated in
[0058] According to the present invention, all steps for first and second stage of the winding method, as described above, can be performed by automated manipulators or robots.
[0059]
[0060] In such an embodiment as shown in
[0061] First, in such an embodiment as shown in
[0062] Second, in such an embodiment as shown in
[0063] Also in this embodiment, as shown in
[0064] In another embodiment of the present invention, the wire can be fastened to the form using means 7 for fastening the wire as shown in
[0065]
[0066]
[0067]
[0068] The present invention makes it possible for the first end 1 and second end 2 of the wire to end in the outer layer of the coil as shown in
[0069] Further,
[0070] It should be understood that the methods described above are just examples of possible implementation of the general principle disclosed. Other embodiments are possible.
INDUSTRIAL APPLICABILITY
[0071] The invention according to the application finds use in winding coil for electric machines.