Methods for manufacturing saddle coils
12354789 ยท 2025-07-08
Assignee
Inventors
Cpc classification
International classification
Abstract
The invention relates to saddle coil winding apparatus, methods of manufacturing saddle coils, and saddle coils produced using the winding apparatus and/or manufacturing methods. The saddle coil winding apparatus and methods of manufacturing beneficially reduce or eliminate the stretching of electrical wires, and do not cause the electrical wires to slide past each other. The saddle coils produced using the winding apparatus and/or manufacturing methods may have electrical leads provided on the outside of the coil.
Claims
1. A saddle coil winding method, comprising: attaching coil form side plates and coil end support plates to a flexible coil bending plate; releasably attaching a rigid top plate to the coil end support plates on the flexible coil bending plate, forming a winding space to constrain an electrical wire; winding the electrical wire around the coil form side plates and coil end support plates between the flexible coil bending plate and the rigid top plate, forming a single coil layer having a desired number of turns; removing the rigid top plate and coil form side plates; bending the flexible bending plate with attached coil end support plates into conformance with a coil bending form, thereby bending the single coil layer into a saddle coil layer; and removing the coil end support plates and freeing the saddle coil layer from the flexible coil bending plate.
2. The saddle coil winding method of claim 1, wherein the coil form side plates and coil end support plates have approximately the same thickness as the electrical wire.
3. The saddle coil winding method of claim 1, wherein the coil form side plates have an outer edge with radius equal to a desired inner radius of the saddle coil layer.
4. The saddle coil winding method of claim 1, wherein the coil end support plates have a width equal to a desired inner width of the saddle coil layer.
5. The saddle coil winding method of claim 1, wherein the coil end support plates have a total separation distance equal to a desired inner planar projected length of the saddle coil layer.
6. The saddle coil winding method of claim 1, wherein the coil form side plates have outer edges, and wherein the coil end support plates have an edge that is tangent to the outer edges of the coil form side plates.
7. The saddle coil winding method of claim 1, wherein the coil form side plates include a cutout for receiving a starting lead of the electrical wire.
8. The saddle coil winding method of claim 1, wherein the coil bending form is a partial cylinder with a radius equal to a desired radius of the saddle coil layer minus a thickness of the flexible coil bending plate.
9. The saddle coil winding method of claim 1, wherein the electrical wire is not stretched during winding.
10. The saddle coil winding method of claim 1, wherein the electrical wire does not cross over itself during winding.
11. The saddle coil winding method of claim 1, wherein the saddle coil layer has electrical leads on an outside of the saddle coil layer.
12. The saddle coil winding method of claim 1, further comprising: stacking multiple saddle coil layers, wherein each subsequent saddle coil layer has a bend radius that is increased from that of a previous saddle coil layer by a thickness of the electrical wire used to form the saddle coil layers that are stacked, and wherein a winding direction of each subsequent saddle coil layer is reversed from the winding direction of the previous saddle coil layer; and connecting inner and outer leads of the saddle coil layers such that the saddle coil layers are in series with current flowing in the same direction in each saddle coil layer, thereby forming a multilayer saddle coil.
13. The saddle coil winding method of claim 1, further comprising applying a coating to the saddle coil layer.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(10) The invention provides saddle coil winding apparatus, methods of manufacturing saddle coils, and saddle coils produced using the winding apparatus and/or manufacturing methods. The saddle coil winding apparatus and methods of manufacturing beneficially reduce or eliminate the stretching of electrical wires, and do not cause the electrical wires to stretch or slide past each other. The saddle coils produced using the apparatus and methods of the invention include saddle coils having one or both electrical leads on the outermost surface of the coil.
(11) The saddle coil winding apparatus of the invention beneficially permits saddle coils to be made that avoid the need to cross over the windings. A length-preserving geometric transformation is used, in which the two coil sides that follow the curvature of the cylinder are transformed into flat arcs with the same radius as the cylinder. This allows a flat coil to be wound that has the same wire length as the desired saddle coil. Bending the flat coil into the saddle shape involves only wire bending, which may be accomplished while the flat coil is on the saddle coil manufacturing apparatus, or after the flat coil is removed from the saddle coil manufacturing apparatus. By using the apparatus of the invention, there is no lateral relative motion of the wires relative to adjacent wires. There is also no length change that would cause the wire to stretch as a result of bending.
(12) A saddle coil has a shape that follows a portion of a cylinder, in which at least two opposing sides have a radius of curvature that conforms to a portion of the circumference of a cylinder having a radius R. In some aspects of the invention, the portion of the circumference of the cylinder that is encompassed by the curved sides of the saddle coil is preferably about one half or less.
(13) The geometric transformation used in the methods of the invention results in a flat coil having two opposed, curved sides, where the curved sides have a radius of curvature R. The flat coil has the same wire length in each turn as the corresponding desired saddle coil. The two sides that follow the curvature of a cylinder are transformed into flat arcs having the same radius R as the theoretical cylinder on which they are modeled. Bending such a flat coil into a saddle shape involves only wire bending, without any lateral relative motion of wires with respect to adjacent wires, or any length change that would require the wire to stretch.
(14) Multiple single-layer saddle coils produced in accordance with the invention may be assembled to produce a multilayer saddle coil of any desired thickness. In this aspect of the invention, the bend radius R of the first saddle coil layer is that of the desired multilayer saddle coil inner radius. The bend radius of each subsequent saddle coil is increased from that of the previous layer by the thickness of the wire t. The second saddle coil layer has a bend radius that is equal to R+t, the third saddle coil layer has a bend radius that is equal to R+[2t], and so on, such that the final outer radius of a multilayer saddle coil is R+[(n1)(t)], where n is the number of coil layers. This permits multilayer saddle coils to be formed such that no additional deformation of the saddle coils is required during the process of assembling the multiple saddle coil layers.
(15) When used to produce a multilayer saddle coil, the winding direction of the individual single-layer saddle coils preferably alternates between clockwise and counter-clockwise. The wire ends of adjacent saddle coil layers are bonded together to place all of the coil layers in series. Preferably, the first and last saddle coil layers both have an accessible wire end on the outer perimeter of the coil for electrical connection.
(16) These and other aspects of the invention will be described with respect to the Figures.
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(27) The desired number of coil layers 308 are stacked to form a complete saddle coil 312 as shown in
(28) It will, of course, be appreciated that the above description has been given by way of example only and that modifications in detail may be made within the scope of the present invention.
(29) Throughout this application, various patents and publications have been cited. The disclosures of these patents and publications in their entireties are hereby incorporated by reference into this application, in order to more fully describe the state of the art to which this invention pertains.
(30) The invention is capable of modification, alteration, and equivalents in form and function, as will occur to those ordinarily skilled in the pertinent arts having the benefit of this disclosure. While the present invention has been described with respect to what are presently considered the preferred embodiments, the invention is not so limited. To the contrary, the invention is intended to cover various modifications and equivalent arrangements included within the spirit and scope of the description provided above.