ARRANGEMENT OF COMPONENTS FOR TRANSFERRING ELECTRIC CURRENT
20210281002 · 2021-09-09
Inventors
- Tony Robert NOLL (Dietenheim, DE)
- Gerhard THUMM (Erbach, DE)
- Volker Voggeser (Senden, DE)
- Michael Wolf (Ulm, DE)
- Christoph KÄSTLE (Ulm, DE)
- Jochen WALLISER (Ulm, DE)
Cpc classification
H01R13/03
ELECTRICITY
H01R13/2457
ELECTRICITY
International classification
Abstract
An arrangement of components for transferring electric current from a current-feeding component to a current-discharging component, including a first component, which feeds current to the arrangement or discharges current from the arrangement. The first component includes a first metallic material and, on at least one surface, has at least one spring lamella composed of the first metallic material and machined out of the first metallic material at the surface. The lamella is machined out of the first metallic material at the surface of the first component such that it is connected monolithically to the first component in a connecting region and, starting therefrom extends as far as a free end and when deflected out of a rest position toward the surface of the first component, exerts a spring force directed away from the surface. A second component is in immediate contact with the lamella of the first component.
Claims
1. An arrangement of components for transferring electric current from a current-feeding component to a current-discharging component, comprising: a first component, which is the component feeding current to the arrangement or is the component discharging current from the arrangement, wherein the first component comprises a first metallic material and, on at least one surface, has at least one spring lamella composed of the first metallic material and machined out of the first metallic material at said surface, wherein the at least one lamella is machined out of the first metallic material at the surface of the first component in such a way that it is connected monolithically to the first component in a connecting region and, starting from the connecting region, extends as far as a free end, and that, when deflected out of its rest position in a direction toward the surface of the first component, it exerts a spring force directed away from the surface of the component; and a second component, which is in immediate contact with the at least one lamella of the first component.
2. The arrangement according to claim 1, wherein only the first component and the second component are situated in the current path of the arrangement.
3. The arrangement according to claim 1, wherein the at least one lamella is machined out of the first metallic material of the first component by a separating process, in particular a cutting, chiseling, peeling, plowing or furrowing process, and of a bending process.
4. The arrangement according to claim 3, wherein the first metallic material of the first component has a greater hardness in the connecting region than outside the connecting region.
5. The arrangement according to any of claim 1, wherein the at least one lamella extends obliquely at an angle of less than 80° to the surface of the first component in the rest position.
6. The arrangement according to claim 5, wherein the at least one lamella extends obliquely at an angle of from 40° to 70° to the surface of the first component in the rest position.
7. The arrangement according to claim 5, wherein the at least one lamella has a convex contour between the connecting region and the free end of the lamella on its side facing away from the first component.
8. The arrangement according to claim 1, wherein the at least one lamella is divided into a plurality of segments, starting from its free end.
9. The arrangement according to claim 1, wherein the first component is composed at least partially of a metallic composite material, which comprises the first metallic material and a second metallic material, wherein the second metallic material has a higher electric conductivity than the first metallic material.
10. The arrangement according to claim 1, wherein the first component has an electrically insulating layer, which is at least partly removed on the side of the lamella which faces away from the surface of the first component.
11. The arrangement according to claim 1, wherein the second component is composed at least partially of a metallic material and in that, on at least one surface, it has at least one spring lamella composed of the metallic material, wherein the lamella is machined out of the metallic material at the surface of the second component in such a way that it is connected monolithically to the second component in a connecting region and, starting from the connecting region, extends as far as a free end, and that the at least one lamella of the second component is in contact with the at least one lamella of the first component.
12. The arrangement according to claim 11, wherein the at least one lamella of the first component is in contact with the at least one lamella of the second component in such a way that the first component remains connected to the second component when the components change their position relative to one another.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0033] Illustrative embodiments of the invention are explained in greater detail by means of the schematic drawings. In the drawings:
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[0043] In all the figures, mutually corresponding parts are provided with the same reference signs.
DETAILED DESCRIPTION
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[0045] The lamellae 3 each have the shape of a strip and have a length L, a width B and a thickness D. The width B is measured from the base of a lamella 3 at the connecting region 31 to its free end 32. The lamellae 3 extend over the entire width of the component 10. The current carrying capacity of the spring contact can be set by means of the distance between adjacent lamellae 3. Irrespective of the precise embodiment of the lamellae 3, the distance between adjacent lamellae can be 0.1 to 15 mm.
[0046] The first component 10 furthermore has a region in which there are no lamellae. In this region, there can be means (not illustrated) for making contact with other electric conductors, e.g. holes with screw fasteners.
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LIST OF REFERENCE SIGNS
[0053] 1 arrangement [0054] 10 first component [0055] 11 first metallic material [0056] 12 second metallic material [0057] 13 composite material [0058] 20 second component [0059] 3 lamella [0060] 31 connecting region [0061] 32 free end [0062] 33 segment [0063] B width of the lamella [0064] D thickness of the lamella [0065] L length of the lamella [0066] α angle