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Titlebook: Springer Handbook of Glass; J. David Musgraves,Juejun Hu,Laurent Calvez Book 2019 Springer International Publishing AG 2019 amorphous mate

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Crystallization and Glass-Ceramicse advantages of glass, mostly ease of shaping/forming, with the specific properties of crystalline phases. Since their discovery in the 1950s, numerous studies have been devoted to glass crystallization mechanisms. Such an understanding is of primary importance to further design glass-ceramics with
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Mechanical Properties of Glasse usually seen as . materials: materials that deform only elastically, until they break. This chapter explores the behavior of glasses from the domain from elasticity to fracture. We first review the most widely used methods for measuring the elastic moduli of glasses, and the state of the art regar
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Chemical Strengthening of Glassh surface compressive stress and deep compressive stress layer. The ionic interdiffusion of monovalent alkali ions within an aluminosilicate glass is described and the complementary error function form of the invading ion concentration profile is established. The generation of the stress profile fro
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Colors in Glassess it can display. Just remember how the colored glasses of cathedral windows made us dream in our childhood, and how much we could quarrel in the schoolyard over a marble or a bead necklace..In this chapter, we will attempt to understand the physical origin of different colors and by what chemical p
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Electrical Transport Properties of Glasssses. Oxide and chalcogenide glasses are classified into an electronic or ionic transport materials depending on the composition of their constituents. Doping of transition metals or alkali atoms into oxide glasses produces electronic or ionic properties in electrical conduction processes. Free carr
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