The invention relates to the technology field of a soft-package lithium battery, in particular to a soft-package lithium battery edgefold structure.
In the conventional soft-package structure, in order to prevent a battery cell from corrosion or short circuit, a plurality of methods are adopted to envelop the exposed aluminum layer of a battery edge sealing resulted from scrap edge.
Both structures shown in
The invention aims at, in allusion to disadvantages of the prior art, providing a soft-package lithium battery edgefold structure and a making method thereof, capable of improving the volume energy density of the battery cell, reducing production cost by cancelling the edge glue, and raising efficiency of automatic production and yield of products.
For achieving the objective, the invention provides a soft-package lithium battery edgefold structure with such a technical scheme as below:
A soft-package lithium battery edgefold structure, comprising a side edge of a soft-package lithium battery and a double edgefold folded by using a packing aluminium foil of the cell of the soft-package lithium battery, wherein a glue layer is arranged between the double edgefold and the side edge, one side of the glue layer is glued with the side edge, while the other side of the glue layer is glued with the double edgefold.
The double edgefold comprises a first edgefold and a second edgefold, in which, the first edgefold is close to the side edge.
The first edgefold has a minimum length more than 0.5 mm, and the length of the first edgefold is less than that of the second edgefold.
The external side of the first edgefold is 0.2-1 0 mm far away from that of the second edgefold.
One side of the glue layer is glued with the side edge, while the other side of the glue layer is glued with the internal side of the first edgefold.
One side of the glue layer is glued with the side edge, and the first edgefold is embedded into the glue layer.
One side of the glue layer is glued with the side edge, while the other side of the glue layer is glued with the internal side of the second edgefold.
The height of the double edgefold is less than or equal to that of the soft-package lithium battery.
The height of the double edgefold is larger than that of the soft-package lithium battery.
The invention has a beneficial effect in that: a double edgefold structure is adopted for a side of the soft-package lithium battery, the double edgefold is fixed by the glue layer on the lateral of the soft-package lithium battery, the edge glue is cancelled for reducing production cost, meanwhile the volume energy density of the battery cell is improved, and the efficiency of automatic production and yield of products are raised.
The double edgefold 22 comprises a first edgefold 221 and a second edgefold 222, in which, the first edgefold 221 is close to the side edge 21.
Preferably, the first edgefold 221 has a minimum length more than 0.5 mm, and the length of the first edgefold 221 is less than that of the second edgefold 222.
Preferably, the external side of the first edgefold 221 is 0.2-1.0 mm far away from that of the second edgefold 222.
In the embodiment, one side of the glue layer 23 is glued with the side edge 21, while the other side of the glue layer 23 is glued with the internal side of the first edgefold 221.
Preferably, the height of the double edgefold 22 is less than or equal to that of the soft-package lithium battery 20; of course, under the condition of specific requirement, the height of the double edgefold 22 can be more than that of the soft-package lithium battery 20.
From above description, those skilled in the art can change or modify the above-mentioned embodiments. Therefore, the invention is not limited to the above-mentioned embodiments. Some modification and alteration of the invention made by those skilled in the art are within the scope of protection of the claims in the invention. In addition, some specific terms are used in the specification for the convenience of description, but not to limit the invention.
Number | Date | Country | Kind |
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201210237239.1 | Jul 2012 | CN | national |