Battery module for secondary battery
Provided is a battery module for a secondary battery. The battery module includes a busbar for a connection of electrode tabs. According to exemplary embodiments of the present disclosure, in a battery module for a secondary battery, a thickness of a welded portion may be reduced while maintaining a total cross-sectional area of a busbar when electrode tabs of each of secondary batteries are connected in series or in parallel by a laser welding. Thus, the battery module may have an enhanced welding quality, and also may have an effect of being applicable to a high-capacity battery or a battery that is used for a long period of time.
1. A battery module comprising:
a plurality of secondary batteries;
an electrode tab extending from each of the plurality of secondary batteries and including an electrode tab bending portion; and
a busbar coupled with the electrode tab bending portion,
wherein the busbar comprises a welding groove formed to be recessed in a welded portion and configured to perform a welding of an electrode tab and a neighboring electrode tab, and
wherein a thickness of the busbar in which the welding groove is formed is less than or equal to a thickness of the electrode tab, and a thickness of the busbar in which the welding groove is not formed is greater than a thickness of the busbar in which the welding groove is formed.
2. The battery module of claim 1 , wherein a plurality of electrode tabs are coupled with one busbar, and at least one welding groove is formed on the one busbar.
3. The battery module of claim 1 , wherein the welded portion of the welding groove is formed along the electrode tab.
4. The battery module of claim 1 , wherein the plurality of secondary batteries are a pouch type cell in which an electrode tab protrudes and is bent to form the electrode tab bending portion.
5. The battery module of claim 1 , wherein
the electrode tab and the neighboring electrode tab comprise the electrode tab bending portion respectively and face each other at the electrode tab bending portion,
the busbar is welded with the electrode tab bending portion using a laser.
6. The battery module of claim 1 , wherein the welding groove is formed to have a predetermined width, in a longitudinal direction of the electrode tab.
7. The battery module of claim 6 , wherein the welding groove is formed so that both longitudinal end portions of the welding groove are spaced apart inwardly by a predetermined distance from end portions of the busbar.
8. The battery module of claim 1 , wherein the busbar further comprises a heat dissipation groove formed to be recessed adjacent to the welding groove.
9. The battery module of claim 6 , wherein a cross section of the welding groove has a rectangular shape, or a trapezoidal shape having a width decreasing downwardly.
10. The battery module of claim 8 , wherein the heat dissipation groove has an uneven portion formed on an inner surface.
11. The battery module of claim 6 , wherein at least one laser welding bead is formed along the welding groove.
12. The battery module of claim 1 , wherein an average thickness of the busbar is greater than a thickness of the electrode tab.