This application claims priority to German Patent Application No. 10 2020 121 878.8, filed Aug. 20, 2020, the content of such application being incorporated by reference herein in its entirety.
The present invention relates to a cell module for a high-voltage battery. The present invention furthermore relates to a corresponding method for producing said module and a corresponding use of said module and also a corresponding high-voltage battery.
EP 2 597 701 A1, which is incorporated herein by reference, discloses a bipartite battery housing with a printed circuit board secured to the inner area of the first part and with a securing mechanism exposed on the surface thereof.
WO 2020/041585 A1, which is incorporated herein by reference, describes a printed circuit board arrangement for electrically connecting the cells of a battery pack for an electric vehicle. The arrangement comprises two types of printed circuit boards, which are connected to the cells in each case by a plurality of fuses.
Described herein is a cell module for a high-voltage battery, a corresponding method for producing said module and a corresponding use of said module and also a high-voltage battery comprising such a module.
One advantage of this cell module resides in the flexible linking of the cells for current, voltage and temperature measurement.
The cell module can comprise cell connectors with a double stamped rosette, along which the respective connector is displaced into its envisaged final position in order to compensate for manufacturing tolerances.
Furthermore, the cell frame can be manufactured from an injection molding with pre-embossed cell connector seats and a material application for the double rosette that includes a fusible pin. The process for producing the entire cell module and the battery can be greatly accelerated in this way.
Furthermore, the cell frame and the cell connectors can be shaped complementarily to one another in such a way that said cell connectors in the cell connector seats bear on the round cells and therebetween bear on the cell frame. This embodiment of the flexible cell frame creates a distance for the interconnection of the cells that helps to avoid a short circuit without additional insulation.
Such a cell frame may be assembled independently of the cells and be supplied to production line manufacturing as a complete assembly for joining to the cells. This assembly process in the context of preassembly enables the manufacturing costs of cell module and high-voltage battery to be significantly reduced.
An exemplary embodiment of the invention is illustrated in the drawings and is described in greater detail below.
As illustrated in
The detail illustration in accordance with
The further drawings illuminate the production and use of such a cell module (10):
The stamped cell connectors (15) provided with a stamped rosette (18) are firstly inserted (see step 1 in
After the insertion step (1), the cell connectors (15) can be displaced as necessary along the stamped rosette (18) into their envisaged final position in order to restrict possible manufacturing tolerances. In this position they are finally secured (see securing step 2 in
The mutually complementary shaping of cell frame (12) and cell connectors (15) is chosen such that in this installation position current, voltage and temperature can be measured by means of the low-voltage contact (13), while the cell connectors (15) in the cell connector seats (17) bear on the round cells (11), and between the cell connector seats (17) the cell frame (12) nevertheless ensures a sufficient distance 3 shown in
| Number | Date | Country | Kind |
|---|---|---|---|
| 10 2020 121 878.8 | Aug 2020 | DE | national |