Battery module and electrode tab ultrasonic wave welding method
View Patent ↗Provided are a battery module and an electrode tab ultrasonic wave welding method. The present invention relates to a battery module and an electrode tab ultrasonic wave welding method by forming the electrode tab in a zigzag form in which the electrode tab extending upwardly is bent downwardly and then, again bent upwardly to allow the electrode tab formed in the zigzag form to absorb vibrations even when a welding portion formed in parallel with a battery cell is fused by ultrasonic wave vibrations, thereby minimizing damage to the battery cell.
1. A battery module including at least two battery cells and electrode tabs being extended from the battery cells and welded to each other by ultrasonic wave welding, the battery module comprising:
extensions of the electrode tabs including a first extension being extended upwardly from the battery cell in a direction parallel with the battery cell and a second extension being extended so as to be bent downwardly from an end of the first extension, wherein the extension includes at least two of each of the first extension and the second extension;
a welding portion in which the second extension is again bent upwardly to form a welding surface in a direction parallel with the battery cell; and
a dummy tap in which one side is welded to the welding surface of the electrode tab of the battery module and another side is welded to a welding surface of an electrode tab of an adjacent battery module,
wherein each electrode tab adjacent to each other and welded to each other is bent in a direction facing each other, and
wherein the dummy tap is bent at least once.
2. The battery module of claim 1 , wherein the battery module has a serial form in which a negative electrode tab and a positive electrode tab that are adjacent to each other are welded to each other and each of the negative electrode tab and the positive electrode tab is bent in a direction facing each other so as to be welded through the welding surface.
3. The battery module of claim 1 , wherein the battery module has a parallel form in which the adjacent electrode tabs having the same polarity are welded to each other and each of the electrode tabs is bent in a direction facing each other to be welded to each other through the welding surface.
4. The battery module of claim 1 , wherein the dummy tap is bent in a ‘W’ or ‘N’-letter shape.
5. The battery module of claim 2 , wherein the dummy tap is bent in a ‘W’ or ‘N’-letter shape.
6. The battery module of claim 3 , wherein the dummy tap is bent in a ‘W’ or ‘N’-letter shape.