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Glasses and glass-ceramics advanced processing and applications K. Annapurna, Atiar Rahaman Molla, editors

SpringerLink Books Physics and Astronomy eBooks 2022 Available online

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Format:
Book
Author/Creator:
Annapurna, K.
Contributor:
Annapurna, K., editor.
Molla, Atiar Rahaman, editor.
Series:
Advanced structured materials 178
Advanced structured materials v. 178
Language:
English
Subjects (All):
Glass.
Glass-ceramics.
glass (material).
Physical Description:
1 online resource
Place of Publication:
[S.l.] : SPRINGER VERLAG, SINGAPOR, 2022.
Singapore Springer 2022
Summary:
This book presents various useful processing techniques and applications of glasses and glass-ceramics. It covers various topics such as introduction to glass, its properties, thermodynamics of glass, heat transfer in glass melts, color in glass and advanced characterization techniques to analyze structure of glasses and glass-ceramics along with functional glasses and glass ceramics for advanced applications. This book will be a useful reference for students, researchers, scientists and technologists working in the field of materials science, especially glass
Contents:
Introduction to Glass
Thermodynamics of Glass
Shining a Light on Glass Colour
NMR Technique for Evaluation of Glass Structure
Intro
Foreword
Preface
Contents
About the Editors
1 Thermodynamics of Glasses
1.1 Introduction
1.2 The Language of Phenomenological Thermodynamics
1.3 The Glassy State
1.4 Multicomponent Glasses
1.5 Summary and Outlook
Appendix 1
Appendix 2
Appendix 3
References
2 Chemical Durability of Glasses
2.1 Introduction
2.2 Design and Evaluation of Corrosion Tests
2.2.1 Design of Corrosion Tests
2.2.2 Evaluation of Corrosion Tests
2.3 Sub-surface Layers
2.4 Thermodynamic Approach to the Hydrolytic Stability
2.5 Rate Equation
2.6 Reaction Path Calculation, Corrosion Layers, Long-Term Behavior
2.7 Summary and Outlook
3 Radiation Heat Transfer in Glass Melts: Key Concepts and Phenomena
3.1 Introduction
3.2 Review of Some Basic Concepts of Thermal Radiation
3.2.1 Planck's Law (Spectral/Monochromatic Blackbody Emissive Power)
3.2.2 Stefan-Boltzmann Law (Total Blackbody Emissive Power)
3.2.3 Intensity of Radiation
3.2.4 Radiation Properties of Surfaces
3.3 Radiation in Absorbing, Emitting, and Scattering Media
3.3.1 Attenuation of Radiative Intensity by Absorption and Scattering
3.3.2 Augmentation of Radiative Intensity by Emission and Scattering
3.3.3 The Radiative Transfer Equation
3.4 Radiative Heat Flux and Its Divergence
3.5 Approximate and Limiting Cases of RTE
3.5.1 One-Dimensional RTE in a Non-scattering Medium
3.5.2 Optically Thin Limit (τLλ ≪ 1)
3.5.3 Optically Thick Limit (τLλ ≫ 1)
3.5.4 An Approximate Solution for One-Dimensional Gray Medium
3.6 Absorption Spectra of Glass Melts
3.7 Modeling of Thermal Radiation in Glass Melts
3.7.1 Discrete Ordinates Method (DOM)
3.7.2 Diffusion Approximation: Radiative Conductivity of Glass Melts
3.8 Illustrative Thermal Radiation Modeling Results
Notes:
Includes bibliographical references
Online resource; title from PDF title page (SpringerLink, viewed December 12, 2022)
Other Format:
Print version:
ISBN:
9789811958212
9811958211
9788981195823
898119582X
OCLC:
1352630468
Access Restriction:
Restricted for use by site license

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