Claims
- 1. A method for manufacturing an electrode comprising:
providing a woven carbon fiber fabric; saturating a portion of the thickness of said fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; and attaching an electrical conductor to said saturated portion.
- 2. The method of claim 1 wherein said electrical conductor comprises a metallic film that is attached across at least a portion of the surface area of said saturated portion.
- 3. The method of claim 1 further comprising activating at least a portion of the carbon fibers of said fabric.
- 4. The method of claim 3 wherein said portion of said carbon fibers of said fabric comprise at least a portion of said unsaturated portion of said fabric.
- 5. The method of claim 1 further comprising binding a porous material to said unsaturated portion.
- 6. The method of claim 5 wherein said porous material is activated carbon.
- 7. A method for manufacturing an ultracapacitor comprising:
providing a first woven carbon fiber fabric; providing a second woven carbon fiber fabric; saturating a portion of the thickness of said first fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; saturating a portion of the thickness of said second fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; providing a separator material having a first side and a second side; placing said unsaturated portion of said first fabric against said first side of said separator material; placing said unsaturated portion of said second fabric against said second side of said separator material; adding an electrolyte to said unsaturated portion of said first material; adding an electrolyte to said unsaturated portion of said second material; and sealing said saturated portion of said first fabric to said saturated portion of said second fabric.
- 8. The method of claim 7 further comprising:
attaching a first electrical conductor to said saturated portion of said first fabric; and attaching a second electrical conductor to said saturated portion of said second fabric.
- 9. The method of claim 8 wherein said first electrical conductor is a metallic film.
- 10. The method of claim 8 wherein said first electrical conductor is a carbon fiber composite.
- 11. The method of claim 9 wherein said first electrical conductor comprises a metallic film that is attached across at least a portion of the surface area of said saturated portion.
- 12. The method of claim 7 further comprising activating at least a portion of the carbon fibers of said first fabric and activating at least a portion of the carbon fibers of said second fabric.
- 13. The method of claim 7 further comprising binding a porous material to said unsaturated portion of said first fabric and binding a porous material to said unsaturated portion of said second fabric.
- 14. The method of claim 13 wherein said porous material is activated carbon.
- 15. An electrode manufactured by the method of:
providing a woven carbon fiber fabric; saturating a portion of the thickness of said fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; and attaching an electrical conductor to said saturated portion.
- 16. An ultracapacitor manufactured by the method of:
providing a first woven carbon fiber fabric; providing a second woven carbon fiber fabric; saturating a portion of the thickness of said first fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; saturating a portion of the thickness of said second fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; providing a separator material having a first side and a second side; placing said unsaturated portion of said first fabric against said first side of said separator material; placing said unsaturated portion of said second fabric against said second side of said separator material; adding an electrolyte to said unsaturated portion of said first material; adding an electrolyte to said unsaturated portion of said second material; and sealing said saturated portion of said first fabric to said saturated portion of said second fabric.
- 17. The ultracapacitor manufactured by the method of claim 14 further comprising:
attaching a first electrical conductor to said saturated portion of said first fabric; and attaching a second electrical conductor to said saturated portion of said second fabric.
- 18. The ultracapacitor manufactured by the method of claim 17 wherein said first electrical conductor comprises a metallic film that is attached across at least a portion of the surface area of said saturated portion.
- 19. The ultracapacitor manufactured by the method of claim 17 further comprising activating at least a portion of the carbon fibers of said first fabric and activating at least a portion of the carbon fibers of said second fabric.
- 20. The ultracapacitor manufactured by the method of claim 17 further comprising binding a porous material to said unsaturated portion of said first fabric and binding a porous material to said unsaturated portion of said second fabric.
- 21. The ultracapacitor manufactured by the method of claim 20 wherein said porous material is activated carbon.
- 22. An electrode comprising:
a woven carbon fiber fabric; a resin partially saturated into a portion of the thickness of said fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; and an electrical conductor attached to said saturated portion.
- 23. The electrode of claim 22 wherein said electrical conductor comprises a metallic film that is attached across at least a portion of the surface area of said saturated portion.
- 24. The electrode of claim 22 wherein at least a portion of the carbon fibers of said fabric is activated.
- 25. The electrode of claim 24 wherein said portion of said carbon fibers of said fabric comprise at least a portion of said unsaturated portion of said fabric.
- 26. The electrode of claim 22 further comprising a porous material bound to said unsaturated portion.
- 27. The electrode of claim 26 wherein said porous material is activated carbon.
- 28. An ultracapacitor comprising:
a first woven carbon fiber fabric; a second woven carbon fiber fabric; a resin partially saturated into a portion of the thickness of said first fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers, said resin further partially saturating a portion of the thickness of said second fabric to produce a saturated portion and an unsaturated portion, said saturated portion having at least some structural rigidity and said unsaturated portion having at least some exposed fibers; a first electrical conductor attached to said saturated portion of said first fabric; a second electrical conductor attached to said saturated portion of said second fabric; a separator material having a first side and a second side, said unsaturated portion of said first fabric being against said first side of said separator material and said unsaturated portion of said second fabric against said second side of said separator material; an electrolyte saturating said unsaturated portion of said first material and saturating said unsaturated portion of said second material; and a sealant sealing said saturated portion of said first fabric to said saturated portion of said second fabric.
- 29. The ultracapacitor of claim 28 further comprising:
a first electrical conductor attached to said saturated portion of said first fabric; and a second electrical conductor attached to said saturated portion of said second fabric.
- 30. The ultracapacitor of claim 28 wherein said first electrical conductor comprises a metallic film that is attached across at least a portion of the surface area of said saturated portion.
- 31. The ultracapacitor of claim 28 wherein at least a portion of the carbon fibers of said first fabric is activated and at least a portion of the carbon fibers of said second fabric is activated.
- 32. The ultracapacitor of claim 28 further comprising a first portion of porous material bound to said unsaturated portion of said first fabric and a second portion of said porous material is bound to said unsaturated portion of said second fabric.
- 33. The ultracapacitor of claim 32 wherein said porous material is activated carbon.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application is based upon and claims the benefit of U.S. provisional application No. 60/362,841 entitled “Multi-Function Carbon Composite Capacitor Electrode”, filed Mar. 11, 2002 by John B. Olson, et al, the entire disclosure of which is herein specifically incorporated by reference for all that it discloses and teaches.
Provisional Applications (1)
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Number |
Date |
Country |
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60362841 |
Mar 2002 |
US |