Claims
- 1. An interconnect assembly for a solid oxide fuel cell, comprising:
a separator plate having two opposed surfaces; and at least one electron conducting compliant interconnect in electrical communication with the separator plate, the compliant interconnect comprising a compliant superstructure having a first portion defining a separator plate contact zone and a second portion defining an electrode contact zone, wherein the superstructure is porous to operating fuel cell gaseous materials.
- 2. The assembly of claim 1, wherein said compliant superstructure is compliant in at least three orthogonal axes.
- 3. The assembly of claim 1, wherein said compliant superstructure is compliant with respect to a load applied from any direction.
- 4. The assembly of claim 1, wherein said compliant superstructure comprises a first plurality of compliant substructures disposed in a first direction and a second plurality of compliant substructures disposed in a second direction different from said first direction so as to define a woven structure.
- 5. The assembly of claim 4 wherein at least one compliant substructure is pre-buckled.
- 6. The assembly of claim 4 wherein said compliant substructures comprise wires, and wherein said woven structure is a wire weave.
- 7. The assembly of claim 4 wherein said compliant substructures comprise pre-buckled wires, and wherein said woven structure is a wire weave.
- 8. The assembly of claim 4 wherein said compliant superstructure is dimpled, and wherein further a first plurality of dimples define said separator plate contact zone and a second plurality of dimples define said electrode contact zone.
- 9. The assembly of claim 8 wherein said first plurality of dimples extend substantially opposite to said second plurality of dimples.
- 10. The assembly of claim 1 wherein said interconnect is a cathode-side interconnect.
- 11. The assembly of claim 1 wherein said interconnect is an anode-side interconnect.
- 12. The assembly of claim 1, wherein said superstructure has a compliance of at least about 5×10−6 mm2/N.
- 13. The assembly of claim 1, wherein said superstructure has a compliance of at least about 5×10−5 mm2/N.
- 14. The assembly of claim 1, wherein said superstructure has a compliance of at least about 5×10−4 mm2/N.
- 15. The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially orthogonal channel.
- 16. The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially slanted channel.
- 17. The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially square channel.
- 18. The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially rectangular channel.
- 19 The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially sinusoidal channel.
- 20. The assembly of claim 1, wherein said compliant superstructure is shaped to include at least one substantially hour-glass shaped channel.
- 21. The assembly of claim 1, wherein said compliant superstructure is comprised of a stainless steel, stainless steel alloy, or stainless steel super-alloy.
- 22. The assembly of claim 1, wherein said compliant superstructure is comprised of a chromium-based alloy.
- 23. The assembly of claim 1, wherein said compliant superstructure is comprised of a noble metal-based alloy.
- 24. The assembly of claim 1, wherein said compliant superstructure is comprised of a composite of at least two materials.
- 25. An interconnect for a solid oxide fuel cell, comprising: a compliant superstructure having a first portion defining a separator plate contact zone and a second portion defining an electrode contact zone, wherein the superstructure is porous to operating fuel cell gaseous materials.
- 26. The apparatus of claim 25, wherein said compliant superstructure is compliant in at least three orthogonal axes.
- 27. The apparatus of claim 25, wherein said compliant superstructure is compliant with respect to a load applied from any direction.
- 28. The apparatus of claim 25, wherein said compliant superstructure comprises a first plurality of compliant substructures disposed in a first direction and a second plurality of compliant substructures disposed in a second direction different from said first direction so as to define a woven structure.
- 29. The apparatus of claim 28 wherein at least one compliant substructure is pre-buckled.
- 30. The apparatus of claim 28 wherein said compliant substructures comprise wires, and wherein said woven structure is a wire weave.
- 31. The apparatus of claim 28 wherein said compliant substructures comprise pre-buckled wires, and wherein said woven structure is a wire weave.
- 32. The apparatus of claim 28 wherein said compliant superstructure is dimpled, and wherein further a first plurality of dimples define said separator plate contact zone and a second plurality of dimples define said electrode contact zone.
- 33. The apparatus of claim 32 wherein said first plurality of dimples extend substantially opposite to said second plurality of dimples.
- 34. The apparatus of claim 25 wherein said interconnect is a cathode-side interconnect.
- 35. The apparatus of claim 25 wherein said interconnect is an anode-side interconnect.
- 36. The apparatus of claim 25, wherein said superstructure has a compliance of at least about 5×10−6 mm2/N.
- 37. The apparatus of claim 25, wherein said superstructure has a compliance of at least about 5×10−5 mm2/N.
- 38. The apparatus of claim 25, wherein said superstructure has a compliance of at least about 5×10−4 mm2/N.
- 39. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially orthogonal channel.
- 40. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially slanted channel.
- 41. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially square channel.
- 42. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially rectangular channel.
- 43. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially sinusoidal channel.
- 44. The apparatus of claim 25, wherein said compliant superstructure is shaped to include at least one substantially hour-glass shaped channel.
- 45. The apparatus of claim 25, wherein said compliant superstructure is comprised of a stainless steel, stainless steel alloy, or stainless steel super-alloy.
- 46. The apparatus of claim 25, wherein said compliant superstructure is comprised of a chromium-based alloy.
- 47. The apparatus of claim 25, wherein said compliant superstructure is comprised of a noble metal-based alloy.
- 48. The apparatus of claim 25, wherein said compliant superstructure is comprised of a composite of at least two materials.
- 49. A solid oxide fuel cell stack comprising:
at least three fuel cell assemblies in electrical contact, wherein at least one fuel cell assembly comprises an electrode, a separator plate, and a compliant interconnect positioned between the electrode and the separator plate, the compliant interconnect comprising a compliant superstructure having a first portion defining a separator plate contact zone and a second portion defining an electrode contact zone, wherein the superstructure is porous to operating fuel cell gaseous materials.
- 50. The apparatus of claim 49, wherein said compliant superstructure is compliant in at least three orthogonal axes.
- 51. The apparatus of claim 49, wherein said compliant superstructure is compliant with respect to a load applied from any direction.
- 52. The apparatus of claim 49, wherein said compliant superstructure comprises a first plurality of compliant substructures disposed in a first direction and a second plurality of compliant substructures disposed in a second direction different from said first direction so as to define a woven structure.
CROSS-REFERENCE TO RELATED CASES
[0001] This application claims the benefit of earlier-filed provisional patent applications entitled, “Compliant, Strain Tolerant Interconnects and Seals for Solid Oxide Fuel Cell Stack,” Application No. 60/444,025, filed Jan. 31, 2003, and “Compliant Interconnects and Seals for Solid Oxide Fuel Cell Stack,” Application No. 60/454,899, filed Mar. 14, 2003, and is a continuation-in-part of U.S. application Ser. No. 10/307,008, Filed Nov. 27, 2002.
Provisional Applications (2)
|
Number |
Date |
Country |
|
60444025 |
Jan 2003 |
US |
|
60454899 |
Mar 2003 |
US |
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
10307008 |
Nov 2002 |
US |
Child |
10758843 |
Jan 2004 |
US |