Claims
- 1. A shape self-supporting ceramic matrix composite body comprising a ceramic matrix incorporating at least one filler material, said ceramic matrix embedding the filler material and said ceramic matrix comprising (1) at least one polycrystalline oxidation reaction product consisting essentially of at least one material selected from the group consisting of aluminum oxide, aluminum nitride and silicon nitride and (2) the remainder including at least one of a metallic constituent and voids; and an attached material comprising a barrier material or a barrier material that has undergone chemical changes or alterations, wherein at least a portion of said attached material removably contacts at least a portion of said ceramic matrix.
- 2. The shaped self-supporting ceramic composite body, according to claim 1, wherein the properties of said body are substantially uniform throughout said body.
- 3. The shaped self-supporting ceramic composite body according to claim 1 further comprising a metallic constituent which is interconnected in at least one direction.
- 4. The shaped self-supporting ceramic matrix composite body of claim 1, wherein said attached material comprises at least one material selected from the group consisting of calcium phosphates, calcium aluminate, calcium alumino-ferrites, calcium carbonates, calcium oxides, calcium alumino-oxysulfates, calcium sulfates, calcium silicates and mixtures thereof.
- 5. The self-supporting ceramic composite body of claim 1, wherein said attached material comprises at least one ferrous material.
- 6. A shaped self-supporting ceramic matrix composite body consisting essentially from about 2% to about 95% by volume of a three-dimensionally interconnected ceramic matrix and from about 5% to about 98% by volume of at least one filler incorporated within said ceramic matrix, said ceramic matrix consisting essentially of from about 60 to about 99% by volume of a three-dimensionally interconnected oxidation reaction product of at least one material selected from the group consisting of aluminum oxide, aluminum nitrite and silicon nitride and the remainder of said ceramic matrix including at least one of an interconnected metallic constituent and voids; and an attached material comprising a barrier material or a barrier material that has undergone chemical changes or alterations, wherein at least a portion of said attached material removably contacts at least a portion of said ceramic matrix.
- 7. A shaped self-supporting ceramic body, comprising:
- a three-dimensionally interconnected polycrystalline ceramic comprising at least one ceramic material consisting essentially of at least one polycrystalline oxidation reaction product selected from the group consisting of metal oxides, metal nitrides, metal borides and metal carbides and the remainder of said polycrystalline ceramic including at least one of a metallic constituent and voids; and
- an attached material comprising a barrier material or a barrier material that has undergone chemical changes or alterations, wherein at least a portion of at least one surface of said attached material is removably attached to at least a portion of said self-supporting ceramic body.
- 8. The self-supporting ceramic composite body of claim 7, wherein said three-dimensionally interconnected polycrystalline material consists essentially of a single phase material comprising alumina.
- 9. The self-supporting ceramic composite body of claim 7, wherein said three-dimensionally interconnected polycrystalline material comprising at least one material selected from the group consisting of aluminum nitrides, silicon nitrides, titanium nitrides and zirconium nitrides.
- 10. The self-supporting ceramic composite body of claim 7, wherein said three-dimensionally interconnected polycrystalline material comprises at least one material selected from the group consisting of titanium borides, zirconium borides, silicon borides, titanium carbides, zirconium carbides and silicon carbides.
- 11. The self-supporting ceramic composite body of claim 8, wherein said attached material comprises at least one material selected from the group consisting of calcium phosphates, calcium aluminates, calcium aluminoferrites, caclium carbonates, calcium oxides, calcium alumino-oxysulfate, calcium sulfates, calcium silicates and mixtures thereof.
- 12. The self-supporting ceramic composite body of claim 8, wherein said attached material comprises at least one ferrous material.
- 13. The self-supporting ceramic matrix composite body of claim 6, wherein said at least one filler comprises a preform.
- 14. The self-supporting ceramic body of claim 7, wherein said three-dimensionally interconnected polycrystalline material comprises tin oxide and said attached material comprises calcium sulfate.
- 15. The self-supporting ceramic matrix composite of claim 6, wherein the remainder of said matrix comprises a mixture of at least one interconnected metallic constituent and voids.
- 16. The self-supporting ceramic matrix composite of claim 6, wherein the remainder of said matrix comprises substantially all voids.
- 17. The self-supporting ceramic matrix composite of claim 6, wherein the remainder of said matrix comprises substantially completely interconnected metallic constituent.
- 18. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler material comprises at least one material selected from the group consisting of a lattice of reinforcing rods, bars, tubes, tubules, plateletes, wires, spheres, particulates, wire cloth, ceramic refractory cloth, and combinations thereof.
- 19. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises a thermodynamically stable material under the temperature and oxidizing conditions of the process.
- 20. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises a kinetically stable material under the temperature and oxidizing conditions of the process.
- 21. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises a material made to be stable under the temperature and oxidizing conditions of the process.
- 22. The self-supporting ceramic matrix composite of claim 21, wherein said at least one filler is made to be stable under the conditions of the process by the application of at least one coating.
- 23. The self-supporting ceramic matrix composite of claim 6, wherein said ceramic matrix consists essentially of alumina and said at least one filler material has a size ranging from about 1000 grit to about 10 grit.
- 24. The self-supporting ceramic matrix composite body of claim 6, wherein said ceramic matrix consists essentially of aluminum nitride and said at least one filler material has a size ranging from about 10 grit to about 1000 grit.
- 25. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises an admixture of at least two grit sizes.
- 26. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises at least one material selected from the group consisting of silicon carbide, aluminum oxide, cerium oxide, hafnium oxide, lanthanum oxide, niobium oxide, prasedium oxide, samarium oxide, scandium oxide, thorium oxide, uranium oxide, yttrium oxide, zirconium oxide and magnesium aluminate spinel.
- 27. The self-supporting ceramic matrix composite of claim 6, wherein said at least one filler comprises at least one material selected from the group consisting of aluminum oxide, silicon carbide and zirconium oxide.
- 28. The self-supporting ceramic matrix composite body of claim 6, wherein said three-dimensionally interconnected oxidation reaction product comprises alumina and said attached material comprises at least one material selected from the group consisting of calcium phosphates, calcium aluminates, calcium alumino-ferrites, calcium carbonates, calcium oxides, calcium alumino-oxysulfate, calcium sulfates, calcium silicates and mixtures thereof.
- 29. The self-supporting ceramic matrix composite of claim 6, wherein said three-dimensionally interconnected oxidation reaction product comprises aluminum oxide and said attached material comprises at least one ferrous material.
- 30. The self-supporting ceramic matrix composite of claim 6, wherein said oxidation reaction product consists essentially of alumina, at least a portion of said alumina being present as alpha-alumina, said metallic constituent comprises aluminum and said filler material comprises alumina particulate.
- 31. The self-supporting ceramic matrix composite of claim 6, wherein said oxidation reaction product consists essentially of alumina, at least a portion of said alumina being present as alpha-alumina, said metallic constituent comprises aluminum and said filler material comprises magnesium aluminate spinel particulate.
- 32. The self-supporting ceramic matrix composite of claim 6, wherein said oxidation reaction product consists essentially of alumina, at least a portion of said alumina being present as alpha-alumina, said metallic constituent comprises aluminum and said filler material comprises silicon carbide particulate.
Parent Case Info
This is a continuation of copending application Ser. No. 07/295,488 filed on Jan. 10, 1989 now abandoned.
US Referenced Citations (19)
Foreign Referenced Citations (7)
Number |
Date |
Country |
0116809 |
Aug 1984 |
EPX |
0155831 |
Sep 1985 |
EPX |
0169067 |
Jan 1986 |
EPX |
0127208 |
Jul 1985 |
JPX |
1011527 |
Apr 1983 |
SUX |
0896766 |
May 1962 |
GBX |
2127709 |
Apr 1984 |
GBX |
Non-Patent Literature Citations (2)
Entry |
"Oxidation of Molten Aluminum Alloys, Reaction with Refractories"-M. Drouzy and M. Richard-Mar. 1974-Fonderie, France No. 332 pp. 121-128. |
"Refractories for Aluminum Alloy Melting Furnaces"-B. Clavaud and V. Jost-Sep., 1980-Lillian Brassinga (from French) Jan., 1985. |
Continuations (2)
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Number |
Date |
Country |
Parent |
295488 |
Jan 1989 |
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Parent |
861024 |
May 1986 |
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