Claims
- 1. A separator for a thermal battery, comprising a porous film of electrically non-conductive ceramic fibers and electrically non-conductive ceramic binder, said ceramic fibers being present in the range of from about 50% to about 95% by weight, said ceramic binder being present in the range of from about 5% to about 50% by weight, said film having a porosity of not less than about 50% by volume.
- 2. The separator of claim 1, wherein said ceramic fibers are up to about 10 microns in diameter and about 1 mm in length.
- 3. The separator of claim 1, wherein said ceramic fibers are oxides.
- 4. The separator of claim 1, wherein said ceramic fibers are Al2O3, AlSiO2, BN, AlN, sulfide ceramics or mixtures thereof.
- 5. The separator of claim 4, wherein Al2O3 is present as a fiber in the range of from about 50% to about 95% by wt and AlSiO2 is present as a fiber in the range of from about 5% to about 50% by wt.
- 6. The separator of claim 1, wherein said binder contains a compound of Al, Mg, S or mixtures thereof.
- 7. The separator of claim 1, wherein said binder is an oxide, nitride, sulfide or mixtures thereof.
- 8. The separator of claim 7, wherein MgO is present in said binder.
- 9. The separator of claim 7, wherein AlN3 is present in said binder.
- 10. The separator of claim 7, wherein a sulfide of CaAl2S4, YALS3, LiAlS3 or mixtures thereof is present in said binder.
- 11. The separator of claim 1, wherein said film is flexible.
- 12. The separator of claim 1, wherein said film has a thickness of less than about 12 mils.
- 13. The separator of claim 1, wherein said film has a thickness in the range of from about 5 to about 10 mils.
- 14. The separator of claim 13, wherein said porous film has pores up to about 5 microns in average diameter.
- 15. The separator of claim 14, wherein the separator fiber is about 56% by weight Al2O3 and about 19% by weight AlSiO2 and the binder is MgO present about 25% by weight.
- 16. A separator and electrolyte combination for a thermal battery, comprising a porous film of electrically non-conductive ceramic fibers and electrically non-conductive ceramic binder,said ceramic fibers being present in the range of from about 50% to about 95% by weight, said ceramic binder being present in the range of from about 5% to about 50% by weight, and an alkali metal halide electrolyte present in said porous film up to about 95% by volume of the combination.
- 17. The combination of claim 16, wherein Al2O3 is present in said ceramic fibers and the combination has a thickness less than about 12 mils.
- 18. The combination of claim 17, wherein the alkali metal halide includes a salt of lithium.
- 19. The combination of claim 18, wherein the alkali metal halide is a mixture if LiCl—LiBr—KBr.
- 20. The combination of claim 16, wherein the volume ratio of the electrolyte to the separator is at least 80 to 20.
- 21. The combination of claim 20, wherein the ceramic fibers are Al2O3, AlSiO2 or mixtures thereof, and the binder includes a compound of Al, Mg, B, S or mixtures thereof and the film is flexible.
- 22. A combination electrode and separator film with electrolyte therein, comprising a porous film of electrically non-conductive ceramic fibers and electrically non-conductive ceramic binder, said ceramic fibers present in the range of from about 50% to about 95% by weight, said ceramic binder present in the range of from about 5% to about 50% by weight, an alkali metal halide electrolyte present in said porous film up to about 95% by volume of the porous film, and a cathode material at 50 volume % of the electrode adhered to the separator film and electrolyte.
- 23. The combination of claim 22, wherein the cathode material includes a compound of one or more of Fe, Co, Cu and Ni.
- 24. The combination of claim 23, wherein the separator film contains fibers of Al2O3 and is less than about 12 mils thick having an electrolyte containing LiCl present in an amount in the range of from about 80% to about 95% by volume of the porous film.
- 25. A cell comprising a lithium-containing anode and a powder cathode separated by a thin film less than about 12 mils in thickness of electrically non-conductive ceramic fibers and electrically non-conductive ceramic binder, said ceramic fibers being present in the range of from about 50% to about 95% by weight, said ceramic binder being present in the range of from about 5% to about 50% by weight, and an alkali metal halide electrolyte present in said thin film up to about 95% by volume.
- 26. The cell of claim 25 wherein the cathode material includes a compound of one or more of Fe, Co, Cu and Ni, the thin film contains fibers of Al2O3 and an electrolyte containing LiCl is present in the thin film amount in the range of from about 80% to about 95% by volume of the film, and the anode contains Li or a compound thereof.
- 27. A battery including a plurality of the cells of claim 26, connected in series or parallel.
- 28. A ceramic article comprising a porous film of a combination of ceramic fibers and a ceramic binder, said ceramic fibers being present in the range of from about 50% to about 95% by weight, said ceramic binder being present in the range of from about 5% to about 50% by weight, said film having a porosity of not less than about 50% by volume.
- 29. A method of making a ceramic combination, comprising providing a suspension of ceramic fibers, filtering the suspension of ceramic fibers leaving a mat of ceramic fibers, introducing a ceramic binder or precursor thereof into the mat of ceramic fibers, drying the ceramic fibers and ceramic binder or precursor thereof, and heating at a temperature and for a time sufficient to convert the precursor of the ceramic binder if present to the binder to provide a combination of ceramic fibers and binder having a porosity not less than about 50% by volume.
- 30. The method of claim 29, wherein the ceramic fibers are one or more of Al2O3, AlSiO2, BN, AlN, and the ceramic binder is a compound of one or more of Al, Mg, S.
- 31. The method of claim 29, wherein the ceramic combination is in the form of a thin film and a cathode material is positioned in contact with one side of the thin film.
- 32. The method of claim 31, wherein an alkali metal electrolyte is present in at least a part of the porous thin film.
- 33. The method of claim 32, wherein an anode material is positioned in contact with said thin film on the other side of the cathode material.
- 34. The method of claim 32, wherein the cathode material includes a compound of one or more of Fe, Co, Cu and Ni, the thin film contains fibers of Al2O3 and an electrolyte containing LiCl is present in the thin film amount in the range of from about 80% to about 95% by volume of the film, and the anode contains Li or a compound thereof.
- 35. The method of claim 34, wherein the anode material contains lithium.
RELATED APPLICATIONS
[0001] This application, pursuant to 37 C.F.R. 1.78(c), claims priority based on provisional application serial No. 60/386,859 filed on Jun. 6, 2002.
Government Interests
[0002] This invention was developed with Navy SBIR funding under Contract no. Contract N00167-99-C-0071. The U.S. government may have certain rights in the invention.
Provisional Applications (1)
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Number |
Date |
Country |
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60386859 |
Jun 2002 |
US |