METHOD FOR WELDING CONDUCTOR PIECES IN A COMPONENT OF AN ELECTROMECHANICAL TRANSDUCER, AND COMPONENT OF AN ELECTROMECHANICAL TRANSDUCER COMPRISING WELDED CONDUCTOR PIECES
20220263390 ยท 2022-08-18
Assignee
Inventors
Cpc classification
B23K26/242
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
The invention relates to a method for producing a component of an electromechanical transducer that has windings, as well as to the component itself.
Claims
1. Method for producing a component of an electromechanical transducer that has windings, wherein the method comprises the steps of: molding one of the free ends of two winding-forming conductor pieces which are to be conductively interconnected, in particular molding both free ends; arranging and fixing the conductor pieces to be interconnected in the component of the electromechanical transducer in a configuration intended for a welding process; wherein the molding, arranging and fixing is carried out in such a way that the two conductor pieces abut one another in the intended configuration and a recess which widens toward the free ends is provided between the two conductor pieces; welding the two conductor pieces to be connected by means of a beam welding process, wherein the beam is introduced into the widening recess so that a conductive weld connection is established which connects the two conductor pieces to be interconnected.
2. Method according to claim 1, characterized in that the two conductor pieces to be interconnected have the same conductor cross section and in that the conductive weld connection has a cross section of at least 80% of the conductor cross section of the conductor pieces.
3. Method according to claim 1, characterized in that the two conductor pieces to be interconnected have the same conductor cross section and in that the conductive weld connection has a cross section of at most 140% of the conductor cross section of the conductor pieces.
4. Method for producing a component of an electromechanical transducer that has windings, wherein the method comprises the steps of: molding free ends of winding-forming conductor pieces which are to be conductively interconnected; arranging and fixing the conductor pieces to be interconnected in the component of the electromechanical transducer in a configuration intended for a welding process; wherein the molding, arranging and fixing is carried out in such a way that the conductor pieces abut one another in an intended series arrangement and a recess which widens toward the free ends with a recess end facing away from the free ends is provided between adjacent conductor pieces, wherein either one recess end of a widening recess between conductor pieces which are to be connected on both sides to adjacent conductor pieces is arranged further away from the free ends of the conductor pieces than the recess end of a widening recess between conductor pieces of which one is to be connected on one side only to an adjacent conductor piece, or wherein and one recess between conductor pieces which are to be connected on both sides to adjacent conductor pieces extends from the free ends of these conductor pieces further along the longitudinal extension of these conductor pieces than a widening recess between conductor pieces of which one is to be connected on one side only to an adjacent conductor piece; welding the conductor pieces to be connected by means of a beam welding process, wherein the beam is introduced into the widening recess so that a conductive weld connection is established which connects the two conductor pieces to be interconnected.
5. Method according to claim 4, characterized in that the series arrangement of the conductor pieces comprises a first conductor piece pair made up of two adjacent conductor pieces interconnected via a first weld connection, which conductor piece pair has, in the connected state, a first effective conductor cross section which corresponds to the sum of the conductor cross sections of the conductor pieces of the conductor piece pair, and is connected to a further conductor piece or a second conductor piece pair via a second weld connection, wherein the second weld connection has a conductor cross section which is between 80% and 140% of the effective conductor cross section of the first conductor piece pair.
6. Method according to claim 4, characterized in that the individual conductor pieces each have the same conductor cross sections.
7. Method according to claim 4, characterized in that, during welding, first the conductor pieces that are to be connected on both sides to adjacent conductor pieces are welded and subsequently conductor pieces are welded that are connected on only one side to conductor pieces that are already interconnected, in order to provide the overall connection.
8. Method according to claim 4, characterized in that, in a series arrangement, the molding, arranging and fixing is carried out in such a way that the depth of the recesses between conductor pieces increases from the outside of the series arrangement to the inside.
9. Method according to claim 4, characterized in that, during welding of a series arrangement the welding of the conductor pieces is performed from the inside of the series arrangement to the outside.
10. Method according to claim 4, characterized in that the weld seams of a series arrangement produced during welding increase in depth from the outside of the series arrangement to the inside along the longitudinal extension of the conductor pieces.
11. Method according to claim 4, characterized in that the weld seams of a series arrangement produced during welding increase in depth from the outside of the series arrangement to the inside along the longitudinal extension of the conductor pieces and a substantially straight end is formed on the side of the previously free ends.
12. Method according to claim 4, characterized in that, directly before welding, the free ends of the conductor pieces to be connected end at the same height.
13. Method according to claim 4, characterized in that the weld seam formed has a substantially triangular cross section.
14. Method according to claim 4, characterized in that the recess between two adjacent conductor pieces has a triangular cross section.
15. Component of an electromechanical transducer that has windings and comprises at least two interconnected winding-forming conductor pieces, wherein the conductor pieces are integrally bonded via a weld connection, characterized in that the conductive weld connection has a cross section of at least 80% of a conductor cross section of the conductor pieces and wherein, alternatively or in addition, the weld connection has a cross section of at most 140% of the conductor cross section of the conductor pieces.
16. Component of an electromechanical transducer that has windings and comprises at least two winding-forming conductor pieces which are integrally bonded to one another via a weld connection, characterized in that the weld connection is formed between the conductor pieces.
17. Component of an electromechanical transducer that has windings and comprises multiple winding-forming conductor pieces which are integrally bonded to one another in a series arrangement via a weld connection, characterized in that the series arrangement of the conductor pieces comprises a first conductor piece pair made up of two adjacent conductor pieces interconnected via a first weld connection, wherein the conductor piece pair has a first effective conductor cross section which corresponds to the sum of the conductor cross sections of the conductor pieces of the conductor piece pair, and is connected to a further conductor piece or a second conductor piece pair via a second weld connection, wherein the second weld connection has a conductor cross section which is between 80% and 140% of the effective conductor cross section of the first conductor piece pair.
18. Component of an electromechanical transducer that has windings and comprises multiple winding-forming conductor pieces which are integrally bonded to one another in a series arrangement via a weld connection, characterized in that the weld connections of the series arrangement increase in depth from the outside of the series arrangement to the inside along the longitudinal extension of the conductor pieces.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0042] Further features, possible applications and advantages of the invention result from the following description of embodiments of the invention, which are explained with reference to the drawings, wherein the features may be essential to the invention, both in isolation and in different combinations, without this being explicitly mentioned again. In the drawings:
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DETAILED DESCRIPTION
[0057] In the following figures, corresponding components and elements have the same reference signs. For the sake of clarity, not all of the reference signs are shown in all of the figures.
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[0059] The cross-sectional area of the conductor pieces 10 along their longitudinal extension forms an effective conductor cross section 16 of a relevant conductor piece 10. For the conductor piece 10 shown on the right, this is highlighted by hatching in
[0060] In
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[0064] The recesses 32 are designed in such a way that they each widen toward the free ends 28. The recesses 32 each have a recess end 34 on the side of the recesses 32 facing away from the free ends 28. The position of the recess ends 34 is illustrated by the line 35. In the present case, all of the recess ends 34 are at the same distance from the free ends 28 or an upper edge 36 of the free ends 28.
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[0068] The interconnection of six conductor pieces 10 is shown in
[0069] To form the weld in
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[0071] The configurations shown in the figures can be produced by means of the methods according to the invention and can also be part of the components of an electromechanical transducer according to the invention that have windings.