Claims
- 1. A self-supporting ceramic matrix composite body comprising:
- (a) a first ceramic matrix incorporating at least one first filler material, said first ceramic matrix embedding said first filler material and said first ceramic matrix consisting essentially of about 60-99 percent by weight of a first polycrystalline oxidation reaction product consisting essentially of a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon nitride, silicon carbide, silicon boride, silicon oxide, aluminum boride, titanium nitride, zirconium nitride, titanium boride, zirconium boride, tin oxide and aluminum oxynitride, and the remainder of said first ceramic matrix consisting essentially of at least one first metallic constituent and voids; and
- (b) at least one channel wherein at least a portion of at least one wall of said at least one channel comprises a lining, said lining comprising a second ceramic matrix, said second ceramic matrix consisting essentially of about 60-99% by weight of a second polycrystalline oxidation reaction product consisting essentially of a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon nitride, silicon carbide, silicon boride, aluminum boride, aluminum carbide, titanium nitride, zirconium nitride, titanium boride, zirconium boride, tin oxide and aluminum oxynitride, and the remainder of said second ceramic matrix consisting essentially of at least one second metallic constituent and voids.
- 2. The ceramic matrix composite body of claim 1, wherein said first filler material comprises at least one material selected from the group consisting of particulate grains, fibers and platelets.
- 3. The ceramic matrix composite body of claim 1, wherein said first filler material comprises at least one material selected from the group consisting of aluminum oxide, silicon carbide, silicon aluminum oxynitride, zirconium oxide, zirconium boride, titanium nitride, barium titanate, boron nitride, silicon nitride and mixtures thereof.
- 4. The ceramic matrix composite body of claim 1, wherein said at least one first metallic constituent comprises at least one metal selected from the group consisting of aluminum, silicon, titanium, zirconium and tin, and further wherein said at least one first metallic constituent also comprises at least one metal selected from the group consisting of iron, nickel, chromium and alloys and intermetallics thereof.
- 5. The ceramic matrix composite body of claim 1, wherein said first ceramic matrix consists essentially of aluminum oxide and aluminum.
- 6. The ceramic matrix composite body of claim 1, wherein said at least one channel comprises a continuous path having an inlet and an outlet, each of said inlet and outlet being accessible to a surface of said body, whereby said at least one channel is suitable for use as a continuous fluid or gas flow path.
- 7. The ceramic matrix composite body of claim 1, wherein said second oxidation reaction product consists essentially of at least one material selected from the group consisting of silicon carbide and aluminum oxide.
- 8. The ceramic matrix body of claim 1, wherein said first oxidation reaction product consists essentially of aluminum oxide, said at least one first metallic constituent consists essentially of aluminum, said at least one first filler material consists essentially of silicon carbide and said second oxidation reaction product consists essentially of aluminum oxide.
- 9. The ceramic matrix composite body of claim 1, wherein said at least one first metallic constituent has a different composition than said at least one second metallic constituent.
- 10. A self-supporting ceramic matrix body comprising:
- (a) a first ceramic matrix consisting essentially of about 60-99% by weight of a first polycrystalline oxidation reaction product consisting essentially of a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon nitride, silicon carbide, silicon boride, silicon oxide, aluminum boride, titanium nitride, zirconium nitride, titanium boride, zirconium boride, tin oxide and aluminum oxynitride, and the remainder of said first ceramic matrix consisting essentially of at least one first metallic constituent and voids; and
- (b) at least one channel wherein at least a portion of at least one wall of said at least one channel comprises a lining, said lining comprising a second ceramic matrix, said second ceramic matrix consisting essentially of about 60-99% by weight of a second polycrystalline oxidation reaction product consisting essentially of a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon nitride, silicon carbide, silicon boride, aluminum boride, aluminum carbide, titanium nitride, zirconium nitride, titanium boride, zirconium boride, tin oxide and aluminum oxynitride, and the remainder of said second ceramic matrix consisting essentially of at least one second metallic constituent and voids.
- 11. The ceramic matrix body of claim 10, wherein said at least one first metallic constituent comprises at least one metal selected from the group consisting of aluminum, silicon, titanium, zirconium and tin, and further wherein said at least one first metallic constituent also comprises at least one metal selected from the group consisting of iron, nickel, chromium and alloys and intermetallics thereof.
- 12. The ceramic matrix body of claim 10, wherein said first ceramic matrix consists essentially of aluminum oxide and aluminum.
- 13. The ceramic matrix body of claim 10, wherein said at least one channel comprises a continuous path having an inlet and an outlet, each of said inlet and outlet being accessible to a surface of said body, whereby said at least one channel is suitable for use as a continuous fluid or gas flow path.
- 14. The ceramic matrix body of claim 10, wherein said second oxidation reaction product consists essentially of at least one material selected from the group consisting of silicon carbide and aluminum oxide.
- 15. The ceramic matrix body of claim 10, wherein said first oxidation reaction product consists essentially of aluminum oxide and said lining comprises a second ceramic matrix consisting essentially of aluminum oxide embedding a filler material consisting essentially of at least one of aluminum oxide and silicon carbide.
- 16. The ceramic matrix body of claim 10, wherein said first oxidation reaction product consists essentially of aluminum oxide and said lining comprises a second ceramic matrix consisting essentially of aluminum oxide embedding at least one second filler material selected from the group consisting of aluminum oxide, silicon carbide, silicon aluminum oxynitride, zirconium oxide, zirconium boride, titanium nitride, barium titanate, boron nitride and silicon nitride.
- 17. A self-supporting ceramic matrix composite body comprising:
- (a) a first ceramic matrix incorporating at least one first filler material, said first ceramic matrix embedding said first filler material and said first ceramic matrix consisting essentially of about 60-99 percent by weight of a first polycrystalline oxidation reaction product consisting essentially of a material selected from the group consisting of aluminum oxide, aluminum nitride, silicon nitride, silicon carbide, silicon boride, silicon oxide, aluminum boride, titanium nitride, zirconium nitride, titanium boride, zirconium boride, tin oxide and aluminum oxynitride, and the remainder of said first ceramic matrix consisting essentially of at least one first metallic constituent and voids;
- (b) at least one channel wherein at least a portion of at least one wall of said at least one channel comprises a lining comprising at least one material selected from the group consisting of aluminum oxide, aluminum nitride and silicon carbide.
- 18. The ceramic matrix composite body of claim 17, wherein said at least one first metallic constituent comprises at least one metal selected from the group consisting of aluminum, silicon, titanium, zirconium and tin, and further wherein said at least one first metallic constituent also comprises at least one metal selected from the group consisting of iron, nickel, chromium and alloys and intermetallics thereof. s
Parent Case Info
This is a continuation of copending application Ser. No. 07/697,749 filed on May 6, 1991, now abandoned which is a continuation of application Ser. No. 07/308,880, filed Feb. 9, 1989, now abandoned, which in turn is a divisional of application Ser.No. 06/907,924, filed Sep.16, 1986, now U.S. Pat. No. 4,847,025, which issued on Jul. 11, 1989.
US Referenced Citations (24)
Foreign Referenced Citations (4)
Number |
Date |
Country |
0116809 |
Aug 1984 |
EPX |
0155831 |
Sep 1985 |
EPX |
0169067 |
Jan 1986 |
EPX |
1493102 |
Nov 1977 |
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. |
Divisions (1)
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Number |
Date |
Country |
Parent |
907924 |
Sep 1986 |
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Continuations (2)
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Number |
Date |
Country |
Parent |
697749 |
May 1991 |
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Parent |
308880 |
Feb 1989 |
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