Connection element for mechanical and electrical connection to a contact element of an electrical storage cell
11417934 ยท 2022-08-16
Assignee
Inventors
- Gerzson Toth (Mannheim, DE)
- Andreas Baus (Bensheim, DE)
- Wilhelm Grzywok (Munich, DE)
- Uwe Hauck (Kleinmanchow, DE)
- Andre Martin Dressel (Lampertheim, DE)
- Yoshikawa Hiroko (Kanagawa, JP)
Cpc classification
H01R4/01
ELECTRICITY
International classification
H01M50/502
ELECTRICITY
Abstract
A connection element for mechanical and electrical connection to a contact element of an electrical storage cell comprises a contact receptacle and a clamping device. The contact receptacle is open in a set-on direction and receives a portion of the contact element. The clamping device extends into the contact receptacle in a press-on position of the clamping device. The clamping device is formed from a shape memory alloy transferable by a phase transformation into the press-on position.
Claims
1. A connection element for mechanical and electrical connection to a contact element of an electrical storage cell, comprising: a contact receptacle open in a set-on direction and receiving a portion of the contact element; a pair of clamping jaws defining the contact receptacle; and a clamping device arranged on at least one of the pair of clamping jaws, the clamping device extends into the contact receptacle in a press-on position of the clamping device, the clamping device is formed from a shape memory alloy transferable by a phase transformation into the press-on position, at least a portion of one of the pair of clamping jaws is not formed from the shape memory alloy.
2. The connection element of claim 1, wherein the contact element is a contact tab and the electrical storage cell is a pouch cell.
3. The connection element of claim 1, wherein the clamping device is transferable by the phase transformation from a set-on position into the press-on position, the clamping device is arranged outside of the contact receptacle in the set-on position.
4. The connection element of claim 1, wherein the clamping device is arranged in a plane of one of the clamping jaws in the set-on position.
5. The connection element of claim 1, further comprising a pair of clamping devices, each of the clamping devices is arranged at one of the pair of clamping jaws.
6. The connection element of claim 5, wherein the pair of clamping devices face each other and are arranged in a symmetrically mutually aligned manner.
7. The connection element of claim 5, wherein the pair of clamping devices face each other and are arranged in an asymmetrically mutually offset manner.
8. The connection element of claim 1, wherein a slot is formed in at least one of the pair of clamping jaws.
9. The connection element of claim 8, wherein a pair of clamping devices are arranged at one of the pair of clamping jaws and the slot extends between the pair of clamping devices.
10. The connection element of claim 8, wherein the slot extends in the set-on direction from a yoke that connects the pair of clamping jaws.
11. The connection element of claim 10, wherein the slot penetrates the yoke and each of the pair of clamping jaws.
12. The connection element of claim 1, wherein the clamping device has a pressure plate curved inward into the contact receptacle in the press-on position.
13. The connection element of claim 1, wherein the shape memory alloy is selected from the group consisting of nickel-titanium, nitinol, nickel-titanium copper, copper-zinc, copper-zinc-aluminum, and copper-zinc-nickel.
14. An electrical storage cell module, comprising: a plurality of electrical storage cells each having a contact element; and a connection element including: a contact receptacle open in a set-on direction and receiving a portion of the contact element; a pair of clamping jaws defining the contact receptacle; and a clamping device arranged on at least one of the pair of clamping jaws, the clamping device extends into the contact receptacle and is mechanically and electrically connected to the contact element in a press-on position of the clamping device, the clamping device is formed from a shape memory alloy transferable by a phase transformation into the press-on position, at least a portion of one of the pair of clamping jaws is not formed from the shape memory alloy.
15. A connection element for mechanical and electrical connection to a contact element of an electrical storage cell, comprising: a contact receptacle open in a set-on direction and receiving a portion of the contact element; a pair of clamping jaws, the contact receptacle is disposed between the pair of clamping jaws; and a pair of clamping devices arranged on one of the clamping jaws, a slot extends through the one of the clamping jaws between the pair of clamping devices, the clamping devices extend into the contact receptacle in a press-on position of the clamping devices, the clamping devices are formed from a shape memory alloy transferable by a phase transformation into the press-on position.
16. The connection element of claim 15, wherein the slot extends in the set-on direction from a yoke that connects the pair of clamping jaws.
17. The connection element of claim 16, wherein the slot penetrates the yoke and each of the pair of clamping jaws.
18. The connection element of claim 3, wherein the clamping jaws remain stationary while the clamping device moves between the set-on position and the press-on position.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will now be described by way of example with reference to the accompanying Figures, of which:
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DETAILED DESCRIPTION OF THE EMBODIMENT(S)
(12) Embodiments of the present invention will be described hereinafter in detail with reference to the attached drawings, wherein like reference numerals refer to the like elements. The present invention may, however, be embodied in many different forms and should not be construed as being limited to the embodiments set forth herein; rather, these embodiments are provided so that the disclosure will be thorough and complete and will fully convey the concept of the invention to those skilled in the art.
(13) A connection element 1 for mechanical and electrical connection to a contact element 2 of an electrical storage cell 3 according to an embodiment is shown in
(14) As shown in
(15) The connection element 1, as shown in
(16) In the exemplary storage cell module 6 shown in
(17) The clamping device 9 of the connection element 1 is formed from a shape memory alloy, which is transferable into the press-on position 10 by a phase transformation. In order to connect it mechanically and electrically to the contact element 2 of the storage cell 3, the at least one clamping device 9 can be designed to be transferable from a set-on position 13, in which it is arranged outside the contact receptacle 7, by the phase transformation into the press-on position 10 in which it extends into the contact receptacle 7. In
(18) In the set-on position 13, the connection element 1 can be pushed in a powerless manner in the set-on direction 8 onto a distal end 12 of the contact element 2, shown in
(19) In the embodiment shown in
(20) The shape memory alloy, from which the clamping device 9 is formed, can by way of example be selected from the group consisting of nickel-titanium, nitinol, nickel-titanium copper, copper-zinc, copper-zinc-aluminum and copper-zinc-nickel, depending on the material from which the contact element 2 is made or which electrical and mechanical properties are desired. Shape memory alloys are metals that can exist in two different crystal structures or phases. They are also called memory metals, as they can re-form to an earlier shaping despite subsequent deformation. The shape change is based on the temperature-dependent lattice conversion to one of two crystal structures.
(21) As shown in
(22) The clamping device 9 is arranged at one of the clamping jaws 14, 14a, and is arranged at the clamping jaw 14 in the embodiment of
(23) At least two clamping devices 9 can be arranged at a clamping jaw 14, 14a, and in the exemplary embodiment of
(24) If the clamping device or devices 9 are arranged at one of the clamping jaws 14 and the other clamping jaw 14a lying opposite the clamping jaw 14 has no clamping devices, as in the embodiment of
(25) If particularly high pressure forces are required for the mechanical and electrical connection, the connection element 1 can be provided additionally with a clinch, crimp or weld section with which the connection element 1 is configured in such a way that it can be connected in a form-fitting and/or adhesive manner to the contact element 2, in addition to the press-on force 11. The sections for clinching, crimping, or welding can be arranged at the edge regions of the clamping jaws 14, 14a, which point in and, respectively, counter to the longitudinal direction L.
(26) As shown in
(27) In the embodiment shown in
(28) The connection element 1 allows an effective and space-saving mechanical and electrical connection of contact elements 2 of a storage cell 3, for example, the contact tabs 5 of a pouch cell 4. As a result, the storage cells 3 can be packed very tightly to form the storage cell module 6 with high energy density.
(29) The phase transformation and the transfer of the clamping device 9 from its set-on position 13 into its press-on position 10 will be discussed in greater detail hereinafter with reference in particular to
(30) A connection element 1 according to another embodiment is shown in
(31) In the embodiment of
(32) In order to give the shape memory alloy the desired spatial configuration of the clamping devices 9 both in the set-on position 13 and in the press-on position 10, the clamping device 9 can first be embossed under temperature and pressure in the press-on position 10, in which the clamping device 9 extends into the contact receptacle 7. This configuration corresponds to the high-temperature phase. Subsequently, the clamping device 9 is deformed when cold in such a way that it is shaped out of the contact receptacle 7, in the embodiment of
(33) A connection element 1 according to another embodiment is shown in
(34) In
(35) Other embodiments of a connection element 1 are shown in
(36) In the embodiment of
(37) In contrast to this, in the exemplary embodiment of
(38) In the connection element 1 according to the embodiments of the invention, the clamping device 9 is in the press-on position 10 in the high-temperature phase and relaxes in the direction of the high-temperature phase under elevated temperature. The clamping device 9 consequently relaxes under flow of current such as when charging or discharging the storage cell 3 and is thus moved out into the press-on position 10. The clamping device 9 is self-resetting and wear-resistant, and thus can be used reliably over long periods of time, even in harsh conditions like those which occur in motor vehicles.