Battery with voltage-generating cells and interposed compensating plates
A battery having a plurality of voltage-generating cells in which a plate-shaped intermediate element having elastic ribs at least on one side thereof is arranged at least between adjacent voltage-generating cells.
1. A battery comprising:
a plurality of voltage-generating cells arranged along a first direction; and
an intermediate element arranged between adjacent ones of the voltage-generating cells, the intermediate element comprising:
a continuous base; and
a plurality of elastic ribs protruding from a face of the continuous base toward one of the voltage-generating cells, adjacent ones of the ribs being spaced from each other in a second direction,
wherein the continuous base extends beyond a base of at least one of the ribs in the second direction and in a direction opposite to the second direction.
2. The battery of claim 1 , wherein the elastic ribs protrude from both faces of the continuous base.
3. The battery of claim 2 , wherein the ribs protruding from one face of the continuous base are offset in relation to the ribs protruding from the other face of the continuous base.
4. The battery of claim 1 , wherein the elastic ribs are aligned obliquely in relation to the cross-section of the intermediate element.
5. The battery of claim 1 , wherein the elastic ribs contact a respective one of the voltage-generating cells.
6. The battery of claim 5 , wherein the intermediate element has a groove between adjacent ones of the elastic ribs which, together with the respective one of the voltage-generating cells, defines a channel through which a coolant flows to absorb heat from the voltage-generating cells.
7. The battery of claim 1 , wherein the adjacent ones of the voltage-generating cells and the intermediate element are mechanically fastened to one another.
8. The battery of claim 1 , further comprising tension elements configured to press the adjacent ones of the voltage-generating cells and the intermediate element against one another through the generation of a compressive preload.
9. The battery of claim 8 , wherein the tension elements comprise one of tension straps or tension rods.
10. The battery of claim 1 , further comprising a support element which absorbs heat from the voltage-generating cells.
11. The battery of claim 10 , wherein the support element comprises a heat exchanger configured to absorb heat from the voltage-generating cells.
12. The battery of claim 11 , wherein the support element is hollow and a coolant flows through the hollow support element to absorb heat from the voltage-generating cells.
13. The battery of claim 10 , wherein the support element has a cavity which is connected to a channel.
14. The battery of claim 10 , wherein the support element comprises a plurality of recesses, each of the plurality of recesses accommodating a respective one of the voltage-generating cells.
15. The battery of claim 10 , wherein the support element comprises a plurality of depressions, each of the plurality of depressions accommodating a respective one of the voltage-generating cells.
16. The battery of claim 11 , wherein the intermediate element has a cross-shaped, a T-shaped, an I-shaped, or an H-shaped cross-section.
17. A battery comprising:
a plurality of voltage-generating cells arranged along a first direction;
an intermediate element arranged between adjacent ones of the voltage-generating cells, the intermediate element comprising:
a continuous base; and
a plurality of elastic ribs protruding from a face of the continuous base toward one of the voltage-generating cells, adjacent ones of the ribs being spaced from each other in a second direction; and
a support element which supports the voltage-generating cells and absorbs heat from the voltage-generating cells,
wherein the continuous base extends beyond a base of at least one of the ribs in the second direction and in a direction opposite to the second direction.
18. The battery of claim 17 , wherein the support element comprises a heat exchanger configured to absorb heat from the voltage-generating cells.
19. The battery of claim 17 , wherein the support element is hollow, and a coolant flows through the hollow support element to absorb heat from the voltage-generating cells.
20. The battery of claim 17 , wherein the support element comprises a plurality of recesses, each of the plurality of recesses accommodating a respective one of the voltage-generating cells.
21. The battery of claim 1 , wherein the adjacent ones of the voltage-generating cells and the intermediate element are adhesively bonded to one another.
22. The battery of claim 1 , wherein each of the ribs protrudes to have a height above the continuous base that is less than or equal to half of a thickness of the intermediate element in the first direction.