By Wolfram Holand, George H. Beall(auth.)
Glass-ceramic fabrics proportion many homes with either glass and extra conventional crystalline ceramics. This new version examines some of the different types of glass-ceramic fabrics, the tools in their improvement, and their numerous functions. With increased sections on biomaterials and hugely bioactive items (i.e., Bioglass and similar glass ceramics), in addition to the most recent mechanisms for the improvement of dental ceramics and theories at the improvement of nano-scaled glass-ceramics, here's a must-have consultant for ceramic and fabrics engineers, managers, and architects within the ceramic and glass industry.Content:
Chapter 1 ideas of Designing Glass?Ceramic Formation (pages 1–74):
Chapter 2 Composition platforms for Glass?Ceramics (pages 75–206):
Chapter three Microstructure regulate (pages 207–251):
Chapter four functions of Glass?Ceramics (pages 252–353):
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Additional info for Glass-Ceramic Technology, Second Edition
Endmember, kalsilite. Natural nepheline occurs at the Na3KAl4Si4O16 point, 25% of the way from soda-nepheline to kalsilite. Solid solution has been observed between natural nepheline: Na3K(AlSiO4)4 and the soda endmember: Na4(AlSiO4)4, or simply NaAlSiO4. Experimental solid solutions in the nepheline area are shown in Fig. 16, which also illustrates the framework silicate feldspar and leucite solid solutions. 15 β-spodumene structure viewed along . Tetrahedra are centered by Al,Si atoms. Li sites occur in pairs (50% occupancy in each), at the edges of ﬁvefold rings.
Hill and Roy (1958), however, successfully synthesized tridymite from transistor-grade silicon and high-purity silica gel using only H2O as a ﬂux, thus conﬁrming the legitimacy of tridymite as a stable silica polymorph. Tridymite in its region of stability between 867 and 1470°C is hexagonal with space group P63/mmc. 0620(4) 1/4 0 Note: Data for 460°C from Kihara (1978). 7 and Fig. 2). When standard tridymite is cooled below 380°C, several phase inversions occur with various changes in symmetry.
The bulk composition also directly determines the potential crystalline assemblage, and this in turn determines the general physical and chemical characteristics, for example, hardness, density, thermal expansion coefﬁcient, and acid resistance. 3 CRYSTAL STRUCTURES AND MINERAL PROPERTIES 5 Microstructure is of equal importance to composition. This feature is the key to most mechanical and optical properties, and it can promote or diminish the characteristics of key crystals in glass-ceramics. It is clear that microstructure is not an independent variable.