Claims
- 1. A method of making an anode or cathode electrode for a fuel cell, comprising the steps of:forming an element comprising a first electrically conductive pattern of an electrolyte tape and an electrically conductive tape; said electrically conductive tape includes an electrolyte component from 0 vol. % to not more than 5 vol. % and a conductive component; creating a plurality of subelements from said element, each subelement having said first electrically conductive pattern of electrolyte tape and electrically conductive tape; and juxtaposing at least two of said subelements such that subelements are in a non-parallel angle to one another in parallel planes while the subelements remain in electrical contact with one another to form in said electrode a second electrically conductive pattern of electrolyte tape and electrically conducting tape that is different than said first electrically conductive pattern.
- 2. The method of claim 1, further comprising the step of bonding said electrically conductive tape with said electrolyte tape.
- 3. The method of claim 2, wherein said electrolyte tape is devoid of said conductive component.
- 4. The method of claim 1, further comprising the step of placing in electrical contact with one another said subelements.
- 5. A method of making an anode electrode for a solid oxide fuel cell, comprising the steps of:forming an element comprising a first electrically conductive pattern of an electrolyte tape and electrically conducting tape; said electrically conductive tape includes said electrolyte component from 0 vol. % to not more than 5 vol. % and a conductive component; creating a plurality of subelements from said element, each subelement having a structured network of defined areas of said electrolyte component physically separated from defined areas of conductive component that provides said first electrically conductive pattern; and juxtaposing said subelements to form said anode electrode, the step of juxtaposing comprising the step of orienting in a non-parallel angle said subelements to one another in parallel planes and placing in electrical contact said first electrically conductive patterns of adjacent subelements such that a second electrically conductive pattern of electrolyte tape and electrically conducting tape that is different from said first electrically conductive pattern is formed in said electrode.
- 6. The method of claim 5, further comprising the step of rotating said subelements relative to one another.
- 7. The method of claim 5, further comprising the step of forming in said anode electrode a second electrically conductive pattern.
- 8. The method of claim 5, further comprising the step of forming a multilayer composite tape and then a layered tape to form said element.
- 9. A method of making an anode electrode for a solid oxide fuel cell, comprising the steps of:forming an element comprising a plurality of layers of an electrically conductive tape of anode material devoid of an electrolyte component and an electrolyte tape, said plurality of layers forming a first electrically conductive pattern; creating a plurality of subelements from said element, each subelement having a structured network of defined active areas of said electrolyte component physically separated from defined active areas of a conductive component in said electrically conductive tape that provides said first electrically conductive pattern; juxtaposing a plurality of said subelements; and rotating in planes substantially parallel to one another a plurality of said subelements such that a totality of said first electrically conductive patterns form a second electrically conductive pattern of said electrically conductive tape in said anode wherein said first and second electrically conductive patterns are different from one another.
- 10. The method of claim 9, wherein said electrolyte tape is substantially devoid of an electrically conductive component.
- 11. The method of claim 9, further comprising the step of combining said electrically conductive tape and said electrolyte tape to form a multilayer composite tape and a layered tape prior to the step of forming an element.
- 12. The method of claim 9, further comprising the step of placing in electrical contact said subelements.
CROSS-REFERENCE TO RELATED APPLICATIONS
The present application claims the benefit of U.S. Provisional Application No. 60/084,840, filed May 8, 1998.
US Referenced Citations (7)
Provisional Applications (1)
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Number |
Date |
Country |
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60/084840 |
May 1998 |
US |