Stock material or miscellaneous articles – Structurally defined web or sheet – Physical dimension specified
Patent
1975-05-21
1977-10-18
Meros, Edward J.
Stock material or miscellaneous articles
Structurally defined web or sheet
Physical dimension specified
423291, 423345, 423346, C01B 3104, C03B 1802, B29J 100
Patent
active
040547086
ABSTRACT:
A thin film of substantially defect-free pyrolytic graphite, useful as a bi-directional reinforcing material, is formed by vapor deposition on an inert liquid substrate surface and separated therefrom. The substrate temperature is substantially below the melting point of the refractory material and the substrate surface is smooth and free of stress to enable formation of a substantially defect-free film. Thin films of other refractory materials can be made similarly by first forming a pyrolytic graphite film on the substrate, and then vapor depositing a film of refractory material on the pyrolytic graphite surface. The pyrolytic graphite and refractory material films are then separated from the substrate surface and then separated from each other. Various refractory film materials can be made including pyrolytic grahite; boron; silicon; and refractory carbides, borides and nitrides. For making pyrolytic graphite films, it is preferable to use tin as the ubstrate, at a temperature of about 1600-1800.degree. C., at atmospheric pressure, a source gas consisting of methane and argon, helium, or hydrogen, and a film residence time on the substrate surface of about 0.16-2 minutes.
REFERENCES:
patent: 3900540 (1975-09-01), Robba et al.
Higgs et al. "Research and Development on Advanced Graphite Materials" Tech. Report WADDTR61-72, 1964, pp. 1-25.
Chang "Studies on Effects of Deposition Conditions and Heat Treatment on the Properties of Pyrolytic Carbon" ORNL3764, 1965, pp. 1-10.
Presland et al., "Carbon" vol. 7. No. 1, 1969, pp. 1-8.
Kelly "Carbon" vol. 7, No. 6, 1969, pp. 699-700.
Froberg Robert W.
Robba William A.
Meros Edward J.
Pfizer Inc.
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