1986Journal of the American Ceramic SocietyRequires access

Ceramic Composite Pipes Produced by a Centrifugal‐Exothermic Process

Osamu Odawara, Jun Ikeuchi

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Abstract

Ceramic composite pipes were produced by a centrifugal‐exothermic process in a short time without the use of a high‐temperature furnace. The process is characterized by an exothermic reaction following a thermite reaction. The reactions occur under the influence of centrifugal force. Two‐layer ceramic pipes composed of molybdenum carbide or boride combined with aluminum oxide were produced using mixtures of MoO 3 , Al, and C or B powders.

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Ceramic composite pipes were produced by a centrifugal‐exothermic process in a short time without the use of a high‐temperature furnace. The process is characterized by an exothermic reaction following a thermite reaction. The reactions occur under the influence of centrifugal force. Two‐layer ceramic pipes composed of molybdenum carbide or boride combined with aluminum oxide were produced using mixtures of MoO 3 , Al, and C or B powders.

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Available abstract

Ceramic composite pipes were produced by a centrifugal‐exothermic process in a short time without the use of a high‐temperature furnace. The process is characterized by an exothermic reaction following a thermite reaction. The reactions occur under the influence of centrifugal force. Two‐layer ceramic pipes composed of molybdenum carbide or boride combined with aluminum oxide were produced using mixtures of MoO 3 , Al, and C or B powders.

Key concepts: Thermite, Exothermic reaction, Materials science, Ceramic, Composite number, Exothermic process, Carbide, Metallurgy

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