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Titlebook: Organic Additives and Ceramic Processing; With Applications in Daniel J. Shanefield Book 1995 Springer Science+Business Media New York 1995

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https://doi.org/10.1007/978-1-4757-6103-0Metall; ceramics; chemistry; organic chemistry; polymer; polymers
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978-1-4757-6105-4Springer Science+Business Media New York 1995
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Organic Chemistry Fundamentals,Before attempting to deal with other aspects of organic chemistry, it is necessary that the nomenclature (naming system) of chemistry be understood. Many organic chemicals have more than one name, an example being a particular type of alcohol containing three carbon atoms, which can be called any of the following five names:
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Introduction,ase means that the clay and water mixture can be made to flow into a desired shape by applying a moderate amount of force, for example, by the direct action of human hands. However, when the potter takes his or her hands away from the clay, and only the much smaller force of gravity is then present,
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Ceramic Processing Fundamentals,written from a somewhat unusual perspective, more like a chemical engineering view of processing than a typical ceramics view. The emphasis on a certain few aspects of processing is based on those serious problem areas that became apparent during the author’s several decades of industrial experience
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Particle Characteristics,articles pack together in the green body. If the particles were spheres, and they were arranged in the “closest packing” that is geometrically possible, they would occupy 74% of the volume, with empty spaces (small “pores”) occupying the rest of the volume. An illustration of just three of these sph
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Solvents, and only has to fluidize the clay powder during shaping. The fineness of the powder, plus its tendency to hydrogen bond to the water, provides the necessary pseudoplasticity for shaping. Some ultrafine components of the clay are nearly at molecular sizes and can act as the dispersant. (More about t
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