Download Carbon–Carbon Materials and Composites by John D. Buckley and Dan D. Edie (Auth.) PDF

By John D. Buckley and Dan D. Edie (Auth.)

The foremost parts of carbon-carbon fabrics and composites are defined during this entire quantity. It provides facts and expertise at the fabrics and constructions built for the construction of carbon-carbon fabrics and composites. The textual content consists of papers by means of thirteen famous authors of their parts of workmanship when it comes to the methods and construction of those fabric structures and constructions.

The subject material within the ebook is prepared to steer the reader via fabrics processing, fabrication, structural research, and functions of ordinary carbon-carbon items. the knowledge supplied comprises: fiber expertise, matrix fabric, layout of composite constructions, production recommendations, engineering mechanics, protecting coatings, and structural purposes utilizing carbon-carbon fabrics and composites

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5). Therefore, unlike PAN and rayon, as-spun pitch precursor fiber has an extremely high degree of molecular orientation. 43 CC Materials and Composites Similar to PAN and rayon, the melt-spun mesophase pitch fibers must be thermoset to render them infusible and then carbonized to develop their final properties. Because mesophase pitch fibers develop an extremely high degree of molecular orientation during fiber formation, the object of subsequent heat treatment is not to develop, but instead to preserve, the molecular orientation.

However, higher temperatures increase the rate of the stabilization reactions, decreasing the time required for this step. Commercially, the temperature selected for stabilization is a compromise between minimizing the required time for this process step and maximizing the mechanical properties of the final carbon fiber. Typically, the as-spun mesophase fibers are heated to temperatures of approximately 300°C for a period ranging from 30 min to 2 hr to be adequately stabilized for final heat treatment.

Carbon Fibers, Filaments and Composites, J, Figueiredo, C. A. Bernardo, R. T, K. Baker, and K. J. , Kluwer Academic PubL, 1990, pp. 79-94. 20. Baker, R. T. : Electron Microscope Studies of Catalytic Growth of Carbon Fibers. Carbon Fibers, Filaments and Composites, J. Figueiredo, C. A. Bernardo, R. T. K. Baker, and K. , Kluwer Academic PubL, 1990, pp. 405-439. 21. ; and Komaki, K,: Formation of Vapor-Grown Carbon Fibers by Seeding Method of Metal Ultra-Fine Particles. Extended Abstracts of 16th Biennial Conference on Carbon, American Carbon Society, San Diego, CA, p.

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