High-temperature compliant compression seal
View Patent ↗A sealing arrangement contains a first mating surface, a second mating surface, and a felt sealing member contacting the first and the second mating surface. The arrangement may be used in a solid oxide fuel cell.
1. A sealing arrangement, comprising:
a first mating surface of a solid oxide fuel cell stack;
a second mating surface of the solid oxide fuel cell stack; and
a gas impermeable metal felt sealing member contacting the first mating surface and the second mating surface;
wherein the metal felt comprises a metal foam.
2. The arrangement of claim 1 , wherein:
a gas passage is located between the first mating surface and the second mating surface;
the first mating surface comprises a surface of a solid oxide fuel cell; and
the second mating surface comprises a surface of an interconnect.
3. The arrangement of claim 2 , wherein:
the first mating surface comprises a ceramic surface of the solid oxide fuel cell; and
the second mating surface comprises a metal surface of the interconnect.
4. The arrangement of claim 2 , wherein the felt sealing member comprises a gas permeable felt member filled with a gas impermeable material to render the sealing member gas impermeable.
5. The arrangement of claim 2 , wherein the felt sealing member comprises a gas permeable felt containing a gas impermeable solid surface to render the sealing member gas impermeable.
6. The arrangement of claim 5 , wherein the solid surface comprises a melted surface rendered into a solid gas impermeable layer.
7. The arrangement of claim 6 , wherein the solid layer is formed on surfaces of the sealing member that are parallel and non-parallel to the first and the second mating surfaces.
8. The arrangement of claim 2 , wherein the felt sealing member comprises a gas permeable felt member coated with a gas impermeable metal foil to render the sealing member gas impermeable.
9. The arrangement of claim 8 , wherein the metal foil is formed on surfaces of the sealing member that are parallel and non-parallel to the first and the second mating surfaces.
10. The arrangement of claim 2 , wherein the felt sealing member comprises a gas permeable felt member coated with a deposited gas impermeable material layer to render the sealing member gas impermeable.
11. The arrangement of claim 10 , wherein the deposited layer is formed on surfaces of the sealing member that are parallel and non-parallel to the first and the second mating surfaces.
12. The arrangement of claim 2 , wherein the felt sealing member is a gas impermeable felt member to render the sealing member gas impermeable.
13. The arrangement of claim 2 , wherein the sealing member is located in a groove in the first or the second mating surface.
14. The arrangement of claim 1 , wherein the metal foam is selected from a group consisting of nickel foam, nickel alloy foam and M—Cr—Al—Y foam, where M is selected from at least one of Fe, Co and Ni.
15. The arrangement of claim 2 , further comprising a gas impermeable sealing material located between the metal felt portion of the sealing member and at least one of the first and the second mating surface.
16. The arrangement of claim 15 , wherein the sealing material comprises a glass or a glaze.
17. The arrangement of claim 1 , wherein:
the first mating surface comprises a surface of an electrolyte of a solid oxide fuel cell; and
the metal felt sealing member forms a gas impermeable seal between one of an anode or a cathode of the solid oxide fuel cell and one of a gas flow duct or an internal manifold.
18. The arrangement of claim 1 , wherein the metal felt sealing member forms a gas impermeable seal on one side of a solid oxide fuel cell electrolyte around an internal manifold extending through the electrolyte.