Claims
- 1. A connection for a fuel cell assembly comprising:
- a plurality of fuel cells;
- a first electrically conductive compliant member connected to one of the fuel cells;
- a first electrically conductive substantially rigid member connected to the first compliant member;
- a second electrically conductive compliant member connected to another one of the fuel cells;
- a second electrically conductive substantially rigid member connected to the second compliant member; and
- a mechanical joint connecting the first and second substantially rigid members.
- 2. The fuel cell connection of claim 1, wherein the fuel cells are arranged in multiple columns and multiple rows.
- 3. The fuel cell connection of claim 1, wherein the fuel cells comprise solid oxides.
- 4. The fuel cell connection of claim 1, wherein the first and second compliant members comprise nickel felt.
- 5. The fuel cell connection of claim 1, further comprising a plurality of the first compliant members and a plurality of the second compliant members.
- 6. The fuel cell connection of claim 1, wherein the first and second substantially rigid members comprise metal plates having a thickness of from about 0.25 to 1.5 mm.
- 7. The fuel cell connection of claim 6, wherein the metal plates comprise nickel.
- 8. The fuel cell connection of claim 1, wherein the mechanical joint comprises at least one weld.
- 9. The fuel cell connection of claim 1, further comprising a flex loop between the first compliant member and the first substantially rigid member and a flex loop between the second compliant member and the second substantially rigid member.
- 10. The fuel cell connection of claim 9, further comprising a spacer inside each of the flex loops.
- 11. The fuel cell connection of claim 1, further comprising a third substantially rigid member mechanically joined to the first and second substantially rigid members.
- 12. The fuel cell connection of claim 11, wherein the third substantially rigid member is mechanically joined to the first and second substantially rigid members by at least one weld.
- 13. A bundle module of fuel cells comprising:
- multiple columnists and multiple rows of fuel cells connected together; and
- a connector at an end of the module comprising:
- electrically conductive compliant members connected to a column of the fuel cells;
- an electrically conductive substantially rigid member connected to the compliant members; and a flex loop between each of the compliant members and the substantially rigid member.
- 14. A connection between fuel cell bundle modules comprising:
- at least two bundle modules of fuel cells comprising multiple columns and multiple rows of fuel cells connected together; and
- a connector between the at least two bundle modules comprising:
- first electrically conductive compliant members connected to a column of the fuel cells of a first one of the bundle modules;
- a first electrically conductive substantially rigid member connected to the first compliant members;
- second electrically conductive compliant members connected to a column of the fuel cells of a second one of the bundle modules;
- a second electrically conductive substantially rigid member connected to the second compliant members; and
- a mechanical joint connecting the first and second substantially rigid members.
- 15. The connection of claim 14, wherein the fuel cell bundle modules are aligned end-to-end to form a bundle row.
- 16. The connection of claim 14, wherein the fuel cell bundle modules are aligned side by side.
- 17. The connection of claim 16, further comprising a third substantially rigid member mechanically joined to the first and second substantially rigid members.
- 18. A method of connecting fuel cells comprising:
- providing a plurality of fuel cells;
- connecting a first electrically conductive compliant member to one of the fuel cells;
- connecting a first electrically conductive substantially rigid member to the first compliant member;
- connecting a second electrically conductive compliant member to another one of the fuel cells;
- connecting a second electrically conductive substantially rigid member to the second compliant member; and
- mechanically joining the first and second substantially rigid members.
- 19. The method of claim 18, wherein the first and second electrically conductive compliant members are connected to the fuel cells and to the first and second substantially rigid members by sintering, and the first and second substantially rigid member are mechanically joined by welding.
GOVERNMENT CONTRACT
The Government of the United States of America has certain rights in this invention pursuant to Contract No. DE-FC21-91MC28055 awarded by the U.S. Department of Energy.
US Referenced Citations (8)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0 451 971 A1 |
Oct 1991 |
EPX |
06203857 |
Jul 1994 |
JPX |
10134836 |
May 1998 |
JPX |