Claims
- 1. A self-supporting ceramic composite body comprising a shaped cavity contained within a filler material, said filler material being embedded by a polycrystalline matrix comprising an oxidation reaction product of a molten parent metal and at least one oxidant, whereby said shaped cavity is formed by inverse shape replication of a mold of shaped parent metal, said parent metal being withdrawn from said cavity by formation of said oxidation reaction product of said molten parent metal with said oxidant.
- 2. The ceramic composite body of claim 1, wherein said polycrystalline matrix comprises the oxidation reaction product of said parent metal and a vapor-phase oxidant, said filler material being permeable to said vapor-phase oxidant.
- 3. The ceramic composite body of claim 1 2, further comprising at least 1% by volume metallic constituents.
- 4. The ceramic composite body of claim 1 2, wherein said parent metal comprises aluminum and said oxidation reaction product comprises alpha-alumina.
- 5. The ceramic composite body of claim 1 2, wherein said parent metal comprises aluminum and said oxidation reaction product comprises aluminum nitride.
- 6. The ceramic composite body of claim 1 2, wherein said parent metal comprises titanium and said oxidation reaction product comprises titanium nitride.
- 7. The ceramic composite body of claim 1 2, wherein said parent metal comprises silicon and said oxidation reaction product comprises silicon carbide.
- 8. The ceramic composite body of claim 1 2, wherein said oxidation reaction product comprises a material selected from the group consisting of oxides, nitrides, carbides, borides and oxynitrides.
- 9. The ceramic composite body of claim 1 2, wherein said oxidation reaction product comprises a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon carbide, silicon boride, aluminum boride, titanium nitride, zirconium nitride, titanium boride, zirconium boride, zirconium carbide, silicon nitride, molybdenum silicide, titanium carbide, hafnium carbide, hafnium boride, tin oxide and aluminum oxynitride.
- 10. The ceramic composite body of claim 1, wherein said filler material comprises a material selected from the group consisting of at least one of aluminum oxide, silica, silicon carbide, silicon aluminum oxynitride, zirconium oxide, barium titanate, boron nitride, silicon nitride, magnesium aluminate, ferrous alloys, iron-chromium-aluminium alloy, carbon and aluminum.
Parent Case Info
This is a divisional of co-pending application Ser. No. 823,542 filed on Jan. 27, 1986, as U.S. Pat. No. 4,828,785 which was allowed on Sept. 20, 1988
US Referenced Citations (13)
Foreign Referenced Citations (3)
Number |
Date |
Country |
0116809 |
Aug 1984 |
EPX |
0155831 |
Sep 1985 |
EPX |
0169067 |
Jan 1986 |
EPX |
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. |
Divisions (1)
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Number |
Date |
Country |
Parent |
823542 |
Jan 1986 |
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