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Titlebook: Glasses and Glass-Ceramics; Advanced Processing K. Annapurna,Atiar Rahaman Molla Book 2022 The Editor(s) (if applicable) and The Author(s)

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https://doi.org/10.1057/9780312299644rmation with host tissues, stimulatory, and therapeutic effects on cells. The current chapter is focused on the various attempts on compositional modifications of melt-derived bioactive glasses which have been carried out to improve the thermal stability, bioactivity, and antibacterial properties of
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Thermodynamics of Glasses,terized by the absence of translational order. Their macroscopic properties are determined by chemical composition, by the time-temperature-pressure path along which the glass transition is reached, however, different from most other materials, not by microstructure. According to the traditional und
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Chemical Durability of Glasses,lab ware, as components in chemical plants, windows, cover glasses, and touch screens, as well as in the assessment of health risks of glass and stone wool, for bioglasses, and for glasses used in the underground storage of nuclear waste. The article starts with a discussion of the design and evalua
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Radiation Heat Transfer in Glass Melts: Key Concepts and Phenomena,r in glass melts of industrial glass furnaces. Glass melts are participating in nature, i.e., they interact with thermal radiation passing through them by emission, absorption, and/or scattering. After reviewing the basic concept of thermal radiation, the chapter delves into its main theme, namely t
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,Thermomechanical Behaviour During Forming of Silicate Glasses—Modelling and Characterization,optical components. The process chain of replicative forming obviates the need of costly and time-consuming multi-step abrasive machining of a glass gob to the final shape of the optics. However, this new process demands an accurate understanding of the thermomechanical behaviour of glass during for
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