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Titlebook: Ultrafine-Grain Ceramics; John J. Burke (Staff Scientist),Norman L. Reed (As Book 1970 Syracuse University Press Syracuse, New York 1970 c

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Fine Particulates to Ultrafine-Grain Ceramicsplied pressure during densification..The state-of-the-art of a number of ceramic materials so processed is described, with attention given to raw material characteristics and processing variables on final microstructure development.
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Solid-State Sinteringter synthesis of both non-isothermal and isothermal sintering data has been used to predict initial sintering behavior under a wide variety of conditions. This approach has been successful in describing the sintering of compacts of spherical particles of Fe, Cu, Fe. O., Ag, and LiF. The relative imp
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Hot Forming of Ceramics hot pressing) of powders without sintering additives is shown to generally produce the finest grain sizes. The resultant bodies generally have the highest strengths to several hundred degrees Kelvin. Additives such as LiF and NaF to oxides (e.g., MgO, CaO, and Al. O.) and of metals (molten at press
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Book 1970 cal Research Laboratories of the Department of Chemical Engineering and Metallurgy of Syracuse University, since 1954. The purpose of the conferences has been to gather together scientists and engineers from academic institutions, industry, and government who are uniquely qualified to explore in de
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The Role of Composition in Ultrafine-Grain Ceramics. These anions are expected to have large and varied effects, as indicated by theory and by meager experimental data, especially with reference to densification during fabrication. The sources of impurities in ultrafine-grain ceramics, primarily anions, are discussed in relation to the surfaces of t
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