This application is a National Stage of International Application No. PCT/CN2019/071605, filed Jan. 14, 2019, which claims priority to Chinese Patent Application No. 201820101847.2, filed Jan. 22, 2018, both of which are hereby incorporated by reference in their entireties.
The present disclosure relates to the field of a battery, and in particular relates to a battery pack.
As higher requirements are imposed on an energy density of a power battery, an assembly method of a battery pack has been transformed up to date. A megatrend of the battery pack is large battery cells, large battery modules, and no independent module container for an individual battery module, so as to achieve a high energy density.
Because a separator in the individual battery module and the module container are cancelled, overall safety of the battery pack is reduced. Especially, there is no necessary high-voltage protection unit for a conductive connecting plate and a battery pack container, there is a considerable risk during an assembly operation or use of the battery pack. Currently, a common practice is to use an integral plastic sheet to cover the top of the large battery module to provide a protection of insulation from the battery pack container. This practice is adverse to maintenance and protection of the individual module, and leads to a lack of insulation protection between adjacent modules.
In view of the problems in the prior art, an objection of the present disclosure is to provide a battery pack, which may implement insulation protection between conductive components and a battery pack container. Also, the battery pack is used more independently and facilitates protection and repair of an individual battery module.
To achieve the above objection, the present disclosure discloses a battery pack, including a plurality of battery modules. Each battery module includes: a battery row, including a plurality of battery cells arranged in a longitudinal direction, each battery cell includes two electrodes with opposite polarities, and electrodes of all battery cells of the battery row form two electrode rows arranging in the longitudinal direction; a flexible printed circuit board extending in the longitudinal direction and located between the two electrode rows of the battery row; and two conductive connecting plate rows located on two sides of the flexible printed circuit board in a transverse direction respectively, each conductive connecting plate row includes a plurality of conductive connecting plates arranged in the longitudinal direction and spaced apart from each other, and each conductive connecting plate in each conductive connecting plate row is electrically connected to the flexible printed circuit board and electrically connected to a corresponding electrode of a corresponding electrode row. Each battery module further includes an insulation cover, covering and fixed to a top of the battery row to insulate each battery module from outside.
Beneficial effects of the present disclosure are as follows:
in the battery pack according to the present disclosure, the design of the insulation cover of each battery module ensures insulation between the conductive components of each battery module and the battery pack container; meanwhile, an individual battery module is used more independently, and is universally applicable, thereby effectively enabling repair and protection of the individual battery module in the battery pack.
A battery pack according to the present disclosure is described in detail below with reference to accompanying drawings.
As shown in
In the battery pack according to the present disclosure, the design of the insulation cover 2 of each battery module M ensures insulation between the conductive components (the flexible printed circuit board 12 and the conductive connecting plate 131) of each battery module and the battery pack container (not shown). In addition, the independent design of the insulation cover 2 of each battery module M makes an individual battery module M more independent and universally applicable, thereby effectively enabling repair and protection of the individual battery module M in the battery pack.
Specifically, as shown in
Each insulation batten 14 is provided with an inner recessed channel 141 extending in the longitudinal direction D1 of the insulation batten 14; each insulation cover 2 is provided with a groove row 21, the groove row 21 is aligned with the inner recessed channel 141 of a corresponding insulation batten 14 and includes a plurality of grooves 211 arranged in the longitudinal direction D1 and spaced apart from each other, and each groove 211 is provided with a fixing hole H extending through the groove 211 in an up-down direction; each battery module M further includes a plurality of snapping members 3, each snapping member 3 passes through the fixing hole H of a corresponding groove 211 and is fixed to the inner recessed channel 141 of the insulation batten 14 in a snap-fit manner. In this way, each insulation cover 2 is firmly fixed onto the corresponding insulation batten 14. In addition, such fixing manner facilitates the assembly of the battery module M, and thus facilitates assembling into a battery pack, thereby improving assembly efficiency of the battery pack.
In an embodiment, as shown in
In the above embodiment, each insulation cover 2 further includes a rear edge part 23, located at a rear side of the insulation cover 2 in a longitudinal direction D1 and extending outward and downward, and the rear edge part 23 covers a rear side of a corresponding battery row 11 in the longitudinal direction D1. The rear edge part 23 covers a rear side of the corresponding battery module M in the longitudinal direction D1, thereby ensuring insulation between the rear side of the flexible printed circuit board 12 in the longitudinal direction D1 of the battery module M and the battery pack container.
In the foregoing embodiment, referring to
In the battery pack according to the present disclosure, in another embodiment, as shown in
In the foregoing embodiment, the insulation cover 2 is fixed onto the corresponding insulation batten 14 by using an adhesive, thereby ensuring position stability of the insulation cover 2.
Referring to
In the embodiments shown in
Number | Date | Country | Kind |
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201820101847.2 | Jan 2018 | CN | national |
Filing Document | Filing Date | Country | Kind |
---|---|---|---|
PCT/CN2019/071605 | 1/14/2019 | WO |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2019/141149 | 7/25/2019 | WO | A |
Number | Name | Date | Kind |
---|---|---|---|
20180198110 | Zeng | Jul 2018 | A1 |
20190372079 | Nakamoto | Dec 2019 | A1 |
Number | Date | Country |
---|---|---|
206806417 | Dec 2017 | CN |
208127288 | Nov 2018 | CN |
102012219784 | Apr 2014 | DE |
2437329 | Apr 2012 | EP |
I608768 | Dec 2017 | TW |
2015118597 | Aug 2015 | WO |
2017198423 | Nov 2017 | WO |
Entry |
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PCT International Search Report for PCT/CN2019/071605, dated Apr. 12, 2019, 13 pages. |
The extended European search report for EP Application No. 19741324.8, dated Dec. 21, 2020, 8 pages. |
The extended European search report dated Sep. 6, 2022 for European Application No. 22168292.5, 9 pages. |
Number | Date | Country | |
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20210050566 A1 | Feb 2021 | US |