Claims
- 1. A method for sealing first and second bipolar plates in a proton exchange membrane fuel cell module, said method comprising:
applying a single layer of a fluid composition elastomeric sealant on one of a first surface of an edge portion of a membrane and a surface of the first bipolar plate to form a first seal element; and sealing the first bipolar plate and said membrane with said first seal element, wherein said first seal element is positioned between the first bipolar plate and said first surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the first bipolar plate.
- 2. A method in accordance with claim 1 wherein said first seal element is applied on one of said first surface of the edge portion of said membrane and the surface of the first bipolar plate as a liquid layer.
- 3. A method in accordance with claim 2 wherein said first seal element is cross-linked after being applied as a liquid layer to form a non-fluid elastomeric layer.
- 4. A method in accordance with claim 3 wherein said first seal element is cross-linked by at least one of an incorporated activator and atmospheric moisture.
- 5. A method in accordance with claim 1 wherein said fluid composition flows into at least one of pores and depressions in the surface to which said fluid composition is applied.
- 6. A method in accordance with claim 1 further comprising:
compressing the first bipolar plate and said membrane so that said first seal element deforms to accommodate non-uniformities in the opposing surface to which it is urged.
- 7. A method in accordance with claim 1 wherein a thickness of said first seal element is less than 30 μm.
- 8. A method in accordance with claim 1 wherein said first seal element is applied to one of said first surface of the edge portion of said membrane and the surface of the first bipolar plate by screen printing.
- 9. A method in accordance with claim 1 wherein said first seal element is formed of a cross-linkable silicon composition.
- 10. A method in accordance with claim 3 wherein first seal element is formed of an organopolysiloxane.
- 11. A method in accordance with claim 1 further comprising:
associating a gasket with a surface of the second bipolar plate, said gasket molded separate from said membrane, the first bipolar plate and the second bipolar plate; and, joining the first and second bipolar plates, wherein said gasket is positioned between the second bipolar plate and a second surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the second bipolar plate.
- 12. A method in accordance with claim 1 further comprising:
applying a single layer of a fluid composition elastomeric sealant on one of a second surface of an edge portion of said membrane and a surface of the second bipolar plate to form a second seal element; and sealing the second bipolar plate and said membrane with said second seal element, wherein said second seal element is positioned between the second bipolar plate and said second surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the second bipolar plate.
- 13. A method for sealing first and second bipolar plates in a proton exchange membrane fuel cell module, said method comprising:
applying a single layer of a liquid composition elastomeric sealant on one of a first surface of an edge portion of a membrane and a surface of the first bipolar plate to form a first seal element; allowing said liquid composition forming said first seal element to flow into at least one of pores and depressions in the surface to which said liquid composition is applied; cross-linking said first seal element to form a non-fluid elastomeric layer; sealing the first bipolar plate and said membrane with said first seal element, wherein said first seal element is positioned between the first bipolar plate and said first surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the first bipolar plate; and compressing the first bipolar plate and said membrane so that said first seal element deforms to accommodate non-uniformities in the opposing surface to which it is urged.
- 14. A method in accordance with claim 13 wherein said first seal element is cross-linked by at least one of atmospheric moisture and an incorporated activator.
- 15. A method in accordance with claim 13 wherein a thickness of said first seal element is less than 30 μm.
- 16. A method in accordance with claim 13 wherein said first seal element is applied to one of said first surface of the edge portion of said membrane and the surface of the first bipolar plate by screen printing.
- 17. A method in accordance with claim 13 wherein said first seal element is formed of a cross-linkable silicon composition.
- 18. A method in accordance with claim 13 further comprising:
associating a gasket with a surface of the second bipolar plate, said gasket molded separate from said membrane, the first bipolar plate and the second bipolar plate; and joining the first and second bipolar plates, wherein said gasket is positioned between the second bipolar plate and a second surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the second bipolar plate.
- 19. A method in accordance with claim 13 further comprising:
applying a single layer of a liquid composition elastomeric sealant on one of a second surface of an edge portion of said membrane and a surface of the second bipolar plate to form a second seal element; allowing said liquid composition forming said second seal element to flow into at least one of pores and depressions in the surface to which said liquid composition is applied; cross-linking said second seal element to form a non-fluid elastomeric layer; and sealing the second bipolar plate and said membrane with said second seal element, wherein said second seal element is positioned between the second bipolar plate and said second surface of the edge portion of said membrane so that gas leakage is prevented between said membrane and the second bipolar plate.
- 20. A method in accordance with claim 20 further comprising:
compressing the second bipolar plate and said membrane so that said second seal element deforms to accommodate non-uniformities in the opposing surface to which it is urged.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation of U.S. patent application Ser. No. 10/305,612, filed on Nov. 27, 2002.
Continuations (1)
|
Number |
Date |
Country |
Parent |
10305612 |
Nov 2002 |
US |
Child |
10877656 |
Jun 2004 |
US |