BATTERY MODULE AND A METHOD FOR ASSEMBLING BATTERY MODULES
Provided are: a battery module which not only facilitates the work of serial and/or parallel coupling a plurality of stacked cell cartridges but also improves safety for workers during the coupling work; and a method for assembling battery modules.
1 . A battery module comprising:
a plurality of stacked cell cartridges to generate current;
bus bars to electrically interconnect the stacked cell cartridges;
a bus bar plate having bus bar receiving grooves, in which the bus bars are received; and
a plate cover coupled to the bus bar plate to cover the bus bars received in the bus bar receiving grooves.
2 . The battery module according to claim 1 , wherein
each of the cell cartridges has a positive electrode terminal and a negative electrode terminal, and
after the bus bars, the bus bar plate, and the plate cover are coupled to one another, the positive electrode terminals and the negative electrode terminals of the cell cartridges are inserted into the bus bar plate or the plate cover so that the positive electrode terminals and the negative electrode terminals are connected to the bus bars.
3 . The battery module according to claim 1 , wherein the bus bar plate and the plate cover are formed of insulators.
4 . The battery module according to claim 1 , wherein the bus bar receiving grooves are obliquely formed at the bus bar plate.
5 . The battery module according to claim 1 , wherein the bus bar receiving grooves are vertically formed at the bus bar plate.
6 . The battery module according to claim 1 , wherein the cell cartridges are stacked to have a plurality of rows,
the battery module further comprises a jump bar to electrically interconnect the cell cartridges stacked in different rows, and
the bus bar plate is further provided with a jump bar receiving groove, in which the jump bar is received.
7 . The battery module according to claim 6 , wherein the jump bar received in the jump bar receiving groove is covered by the plate cover together with the bus bars.
8 . The battery module according to claim 7 , wherein
each of the cell cartridges has a positive electrode terminal and a negative electrode terminal, and
after the bus bars, the jump bar, the bus bar plate, and the plate cover are coupled to one another, the positive electrode terminals and the negative electrode terminals of the cell cartridges are inserted into the bus bar plate or the plate cover so that the positive electrode terminals and the negative electrode terminals are connected to the bus bars and the jump bar.
9 . An assembly method of a battery module comprising:
stacking a plurality of cell cartridges to generate current;
receiving bus bars to electrically interconnect the stacked cell cartridges in bus bar receiving grooves formed at a bus bar plate;
covering the bus bars received in the bus bar receiving grooves with a plate cover; and
inserting positive electrode terminals and negative electrode terminals formed at the cell cartridges into the bus bar plate or the plate cover so that the positive electrode terminals and the negative electrode terminals are connected to the bus bars.
10 . An assembly method of a battery module comprising:
stacking a plurality of cell cartridges to generate current;
receiving bus bars to electrically interconnect the cell cartridges stacked in the same row in bus bar receiving grooves formed at a bus bar plate and receiving a jump bar to electrically interconnect the cell cartridges stacked in different rows in a jump bar receiving groove formed at the bus bar plate;
covering the bus bars received in the bus bar receiving grooves and the jump bar received in the jump bar receiving groove with a plate cover; and
inserting positive electrode terminals and negative electrode terminals formed at the cell cartridges into the bus bar plate or the plate cover so that the positive electrode terminals and the negative electrode terminals are connected to the bus bars and the jump bar.