BATTERY ASSEMBLY FOR BATTERY PACK
20190296286 ยท 2019-09-26
Inventors
Cpc classification
Y02E60/10
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y02P70/50
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H01M2220/20
ELECTRICITY
H01M10/4207
ELECTRICITY
International classification
H01M10/42
ELECTRICITY
Abstract
A battery assembly has a plurality of laterally adjacent frames, respective battery cells fixed in the frames, and respective pole extenders projecting upward from the cells and each having an outer end that is horizontally bent to form a downwardly directed lower extender face. A conductive connector has for each of the cells a respective connector arm and is insertable into the frames into a position with the arms under the lower faces of the respective outer ends. A wedge bears upward on the connector arms, downward on the frame or cells, and presses the arms upward against the lower faces of the outer ends of the respective extenders. A wedge formation on the frame is underneath and bears upward on the wedge.
Claims
1. A battery assembly for a battery pack, the assembly comprising: a battery cell; a frame holding the battery cell; a pole extender that has one side connected to the battery cell and an opposite side projecting away from the battery cell and having an outer end with a lower downwardly directed face turned toward the cell; a connector fittable with the extender, to which the outer end of the pole extender is connected, and that can connect the battery cell to adjacent battery cells of the battery pack, the connector having an upper face underneath and flatly engaging the lower face of the extender when the connector is fitted to the extender; a wedge fixed underneath the connector, bearing downward on the frame, and having a pair of wedge faces forming a small acute angle with each other to press the connector upward against the lower face of the outer end; and a wedge formation on the frame underneath and bearing upward on the wedge.
2. The battery assembly defined in claim 1, wherein the one wedge face is a lower face of the wedge bearing downward on the frame or cell.
3. The battery assembly defined in claim 1, further comprising: mounting formations fixing the connector on the base.
4. The battery assembly defined in claim 1, wherein the battery cell is fixed by adhesive bonding, clamping or press fit in the frame.
5. The battery assembly defined in claim 1, wherein the wedge is mounted on the frame.
6. The battery assembly defined in claim 5, wherein the wedge is integral with the frame.
7. The battery assembly defined in claim 1, wherein a relief profile is formed on the pole extender, extends parallel to a main plane of the battery cell, and projects from the extender on one side and the outer end of the pole extender.
8. A battery assembly comprising: a plurality of laterally adjacent frames each formed with an upwardly directed wedge face; respective battery cells fixed in the frames; respective pole extenders projecting upward from the cells and each having an outer end that is horizontally bent to form a downwardly directed lower extender face extending at a small acute angle to the wedge faces; a conductive connector having for each of the cells a respective connector arm and being insertable between the outer ends of the extenders into a position with the arms under the lower faces of the respective outer ends; and a wedge bearing upward on the connector arms, downward via a lower wedge face on the upwardly directed wedge faces of the frame, and pressing the arms upward against the lower faces of the outer ends of the respective extenders when the connector is inserted into the frame.
9. The assembly defined in claim 8, wherein the wedge faces are parallel to each other, grip the respective arms, the arms being of uniform vertical thickness.
Description
BRIEF DESCRIPTION OF THE DRAWING
[0013] The above and other objects, features, and advantages will become more readily apparent from the following description, reference being made to the accompanying drawing in which:
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SPECIFIC DESCRIPTION OF THE INVENTION
[0022] As seen in
[0023] The battery cell 2 of the battery assembly 1 is inserted into the frame 3 of the battery assembly so that the battery cell 2 is fixed therein. The fixing can be realized in that the battery cell 2 is adhesively bonded, clamped and/or press fitted into the frame 3.
[0024] Each pole extender 4 shown in
[0025] In the delivery state shown in the drawing, the outer end 5 of each pole extender 4 projects out of the respective battery cell 2 of the battery assembly 1. To install the battery assembly 1, the outer end 5 of the pole extender 4 extends at 90 in a here horizontal connection plane itself extending perpendicular to the here vertical main plane of the battery cell 2. In
[0026] The relief contour 6 comprises curved and planar sections and is used, in the joined state of the battery assembly, to prevent vibrations etc. from being transmitted to a materially connected connection between the pole extenders 4 on one side and a connector 8 that connects adjacent battery assemblies 1 to one another on the other side.
[0027] The connector 8 shown in
[0028] For uniform contact between the connecting arms 9 of the connector 8 on the other side and the outer ends 5 of the pole extenders 4, in the case of the battery assembly 1 according to the invention, the connector 8 is pushed from the side, as can be seen from
[0029] To this end, in the embodiment of the battery assembly 1 according to the invention, the connector 8 is held on a wedge-shaped base element 10 that is provided with mounting formations or tabs 11 that securely secure the connector 8 to the upper face of the base element 10 and thus fix it there. The connector 8 is thus securely fixed to the base element 10.
[0030] In order, during the lateral pushing-in of the connector 8 locked on the base element 10 into the battery assemblies 1, that this insertion process is easy and to ensure that at the end of this insertion process, uniform surface contact is provided between the connecting arms 9 of the connector 8 on one side and the bent outer ends 5 of the pole extenders 4 on the other side, in the illustrated embodiment of the battery assembly according to the invention, a wedge formation 12 is formed on the frame 3 and has a sloped upper face complementary to a sloped lower face 13 of the base element 10 so that it is parallel to an upper face of the base element 10.
[0031] During the insertion process, the connecting arms 9 of the connector 8 can be brought successively closer to the outer ends 5 of the pole extenders 4, until they are located in the fully inserted state of the connector 8 in flat surface contact with the outer ends 5 of the pole extenders 4.
[0032] In the fully inserted state of the base element 10, locking formations 14 formed on the inserted end of the base element 10 are in engagement with locking formations 15 on the battery assembly 1. As the arms 9 of the connector 8 fixed to the base element 10 slide in underneath the outer ends 5, the complementary faces 10 and 12 engage and push the arms 9 up against the ends 5 while pressing the base element 10 down against the frames 3.
[0033] The complementary interfit between the base element 10 and extender outer ends 5 and the vertical dimensions of the unit from the base element 10 and connector 8 on the other hand, ensure that at the end of the insertion process, good surface contact is formed between the connecting arms 9 and the extender outer ends 5 with a desired contact pressure, in order to ensure an orderly connection of the battery assemblies 1 to the connector 8 long-term.
[0034] The battery-cell wedge surface 12 can be constructed integrally with the frame 3 of the battery assembly 1. Alternatively, it is of course possible to configure the wedge 12 as a separate component that can be mounted on the frame 3.
[0035] A further embodiment, shown in
[0036] During removal of the battery packs, it is possible to separate the connectors 8 by lateral extraction from the battery assemblies 1, which is of course true for all embodiments, as are shown in
[0037] In the mounted state, the connector 8 is securely locked under the outer ends 5 of the pole extenders of the adjacent battery assemblies 1. A subsequent and compensating mounting or removal of the connector 8 is enabled by the angled wedge faces 13 and 11. Owing to the interaction between the oblique wedge faces 11 and 13, the connector 8 is guided parallel and from below onto the outer ends 5 of the pole extenders 4. The gradual height compensation is important for a connection to be produced between the outer ends 5 of the pole extenders 4 on one side and the connecting arms 9 of the connector 8 on the other side. Solid mountings of this type are shown by way of example in