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Titlebook: Ceramic Microstructures ‘86; Role of Interfaces Joseph A. Pask,Anthony G. Evans Book 1987 Plenum Press, New York 1987 Al2O3.CaO.cement.cera

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Ceramic Microstructures: The Art of the Possibleor ceramics. The long recognised tendency to move to more uniform microstructural design in the quest for reproducible properties has now been coupled with the tendency to propose designs of more deliberate complexity; these have emerged in response to specific property requirements which can only b
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Design of High Thermal Expansion Glass-Ceramics Through Microstructural Controlg the glass to a temperature near 1000°C to grow well-faceted 0.1–0.5 .m Li.PO. crystallites in the molten glass matrix. When the temperature is lowered to the 750°–850°C range, a mixture of high expansion SiO. polymorphs and lithium silicate phases crystallize. TEM observations on one composition r
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Grain Boundaries and Interfaces: Some Applications of Electron Microscopy and Microanalysismicroscopy (TEM) and microanalyis (AEM) applied to ceramics but few of the remaining 55 or so papers made significant reference to these techniques, In the same year a conference on mineralogy dedicated to electron microscopy demonstrated many beautiful examples (ref. 2) which are of direct interest
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Quantitative Characterization of Microstructural Geometry of Interfacesundaries. There is increasing awareness that the atomistic structure of internal interfaces has a pronounced effect on the mechanical properties of metals (see; for example, Grabski, 1985; Lim and Raj, 1985; Watanabe, 1985) and of metal/ceramic composites (e.g. Elssner et al., 1985). There is consid
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Analytical Electron Microscopy of the Glassy Phase in Mullite/Zirconia Compositesntering of zirconia and mullite., sintering of precursors of mullite with zirconia and reaction sintering of zircon and alumina. have been used to obtain dense composites. Several techniques such as the use of sintering additives., fine reactive powders. and hot pressing. have been combined with the
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