Claims
- 1. An improved silicon carbide-containing fiber preform comprising 1-dimensional, 2-dimensional, or 3-dimensional aligned tows of silicon carbide-containing fibers, each fiber having a diameter up to and including 40 micrometers and coated with a slurry composition comprising at least one high char yielding resin selected from a carbon forming resin or a ceramic forming resin or a mixture of both, and carbon particles and silicon carbide particles having a mean particle size of about 0.1 to 20 micrometers.
- 2. An improved silicon carbide-containing fiber preform according to claim 1 where said carbon forming resins are selected from the group consisting of phenolics, furfuryl alcohol, partially-polymerized resins derived therefrom, petroleum pitch, coal tar pitch, and mixtures thereof.
- 3. An improved silicon carbide-containing fiber preform according to claim 1 where the ceramic forming resins comprise resins which pyrolyze to form a solid phase selected from the group consisting of silicon carbide, carbon, silicon nitride, silicon-oxycarbides, silicon-carbonitrides, boron carbide, boron nitride, metal carbides, metal nitrides, and mixtures thereof.
- 4. An improved silicon carbide-containing fiber preform according to claim 3 where the metal carbide or metal nitride is zirconium or titanium.
- 5. An improved silicon carbide-containing fiber preform according to claim 1 where said fiber has at least one coating covering substantially all of the outer surface of said fiber.
- 6. An improved silicon carbide-containing fiber preform according to claim 5 where said first coating can be about 0.1 to about 4.0 micrometers thick.
- 7. An improved silicon carbide-containing fiber preform according to claim 5 where said coating is selected from the group consisting of a nitride, a boride, a carbide, an oxide, a silicide, and mixtures thereof.
- 8. An improved silicon carbide-containing fiber preform according to claim 5 where said fibers have more than one coating.
- 9. An improved silicon carbide-containing fiber preform according to claim 8 where said coatings are deposited as a coating system selected from the group consisting of a nitride coating and a silicon carbide coating; a boron nitride, a carbide, and a silicon nit ride coating system; a boron nitride, a silicon carbide, a carbide, and a silicon nitride coating system; a boron nitride, a carbon, a silicon nitride and a carbon coating system; and a carbon, a boron nitride, a carbon, a silicon nitride, and a carbon coating system; and mixtures thereof.
- 10. A silicon carbide matrix composite comprising a mass of silicon carbide-containing fibers, each fiber having a diameter up to and including 40 micrometers, said fibers occupy about 5 to about 45 volume percent of the composite, where said fibers were impregnated with a slurry composition containing at least one high char yield resin selected from a carbon forming resin or a ceramic forming resin or a mixture of both; a substantially pore-free silicon carbide matrix in an amount of about 55 to about 95 volume percent of the composite, said silicon carbide matrix having a silicon carbide phase from about 10% to 95% and an elemental silicon phase from about 90% to 5%.
- 11. An article of manufacture for use in an engine, said article made of a ceramic composite having a silicon carbide phase, a mass of silicon carbide-containing fibrous material bundled in tows, where said fibrous material was impregnated with a slurry composition containing at least one high char yield resin selected from a carbon forming resin or a ceramic forming resin or a mixture of both, each fiber having a diameter up to and including 40 micrometers, and said fibers occupy abut 5 to about 45 volume percent of the composite and said silicon carbide phase being a substantially pore-free silicon carbide matrix in an amount of about 55 to about 95 volume percent of the composite, said silicon carbide matrix having a silicon carbide phase of about 10% to 95% and an elemental silicon phase from about 90% to 5%.
- 12. An improved silicon carbide-containing fiber preform according to claim 1 where the fibers are formed into a preselected preform by compression molding, autoclaving, or bladder molding.
Parent Case Info
This application is a division of application Ser. No. 08/777,129, filed Dec. 30, 1996, U.S. Pat. No. 6,024,898 which is hereby incorporated by reference in its entirety.
Government Interests
This invention was made with government support under Contract No.NAS3-26385 awarded by the National Aeronautical and Space Administration (NASA). The government may have certain rights to the invention.
US Referenced Citations (1)
Number |
Name |
Date |
Kind |
5330854 |
Singh |
Jul 1994 |
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