Last edited by Shaktijora
Wednesday, August 5, 2020 | History

7 edition of Properties of Glass-Forming Melts found in the catalog.

Properties of Glass-Forming Melts

  • 275 Want to read
  • 2 Currently reading

Published by CRC .
Written in English

    Subjects:
  • Materials science,
  • Material Science,
  • Electrodes, Glass,
  • Technology,
  • Technology & Industrial Arts,
  • Science/Mathematics,
  • Engineering - Chemical & Biochemical,
  • Technology / Material Science,
  • Electrochemistry,
  • Glass

  • Edition Notes

    ContributionsDavid Pye (Editor), Innocent Joseph (Editor), Angelo Montenero (Editor)
    The Physical Object
    FormatHardcover
    Number of Pages512
    ID Numbers
    Open LibraryOL8741659M
    ISBN 101574446622
    ISBN 109781574446623

      This book describes the structure-property-composition relationships for silicate glasses and melts of industrial and geological interest. From Antiquity to the 20th century, an introductory chapter presents this subject in a historical perspective. Basic concepts are then discussed in three chapters where attention is paid to the glass transition and its various consequences on melt and glass 5/5(1). Comparison of "Glass Viscosity Calculation Based on a Global Statistical Modeling Approach" to other glass viscosity models. For comparison, the glass melting point predictions in o C at a viscosity of 10 Pa*s ( Poise) for the compositions given in Table I according to several models are listed in Table II. All glasses in Table I are standards, where the viscosity (but not the composition.

    A silicate melt phase is the essential component of nearly all igneous processes, with dramatic consequences for the properties of the Earth's interior. Throughout Earth history and continuing to the present day, silicate melts have acted as transport agents in the chemical and physical differentiation of the Earth into core, mantle and crust. Information on the vaporization processes and thermodynamic properties of glass-forming oxide melts in the systems MgO-B2O3-SiO2, CaO-B2O3-SiO2, SrO-B2O3-SiO2, BaO-B2O3-SiO2, PbO-B2O3-SiO2, CdO-B2O3-SiO2, ZnO-B2O3-SiO2, Bi2O3-B2O3-SiO2 and Bi2O3-GeO2-SiO2 together with the earlier obtained data is discussed. These data were obtained by high-temperature mass spectrometric method.

    We investigate the effect of antiplasticizer additives on long-wavelength thermodynamic properties relating to the efficiency of molecular packing (density ρ and isothermal compressibility κ T) and material stiffness (bulk modulus K, shear modulus G, and Poisson ratio ν) of model glass-forming polymer melts. Variations in the stiffness (G and molecular force constant k m from the Debye. We investigate the thermodynamic and dynamic properties of a model unentangled glass-forming polymer melt over a wide range of pressures (P) and temperatures (T) using molecular dynamics simulation. We show that the T dependence of the reduced thermal expansion coefficient and isothermal compressibility becomes weaker for higher P. Based on the generalized entropy theory, these trends .


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Properties of Glass-Forming Melts Download PDF EPUB FB2

This book presents state-of-the-art information concerning properties and processes involved in glass melts. Based upon contributions by renowned authors and scientists working with glass melt systems, Properties of Glass-Forming Melts is an excellent compilation of the current knowledge on property data, mechanisms, measurement techniques, and structure-related properties of : $   This book presents state-of-the-art information concerning properties and processes involved in glass melts.

Based upon contributions by renowned authors and scientists working with glass melt systems, Properties of Glass-Forming Melts is an excellent compilation of the current knowledge on property data, mechanisms, measurement techniques, and structure-related properties of cturer: CRC Press. Book Description.

This book presents state-of-the-art information concerning properties and processes involved in glass melts. Based upon contributions by renowned authors and scientists working with glass melt systems, Properties of Glass-Forming Melts is an excellent compilation of the current knowledge on property data, mechanisms, measurement techniques, and structure-related properties of.

This book presents state-of-the-art information concerning properties and processes involved in glass melts. Based upon contributions by renowned authors and scientists working with glass melt systems, Properties of Glass-Forming Melts is an excellent compilation of the current knowledge on property data, mechanisms, measurement techniques, and strCited by: This book presents state-of-the-art information concerning properties and processes involved in glass melts.

Based upon contributions by renowned authors and scientists working with glass melt systems, Properties of Glass-Forming Melts is an excellent compilation of the current knowledge on property data, mechanisms, measurement techniques, and structure-related properties of glass-forming.

Properties of Glass-Forming Melts. DOI link for Properties of Glass-Forming Melts. Properties of Glass-Forming Melts book.

Edited By David Pye, Innocent Joseph, Angelo Montenero. Edition 1st Edition. First Published eBook Published 12 May Author: David Pye, Innocent Joseph, Angelo Montenero.

Industrial glass - Industrial glass - Glass forming: All traditional glass products such as tableware, containers, tubes and rods, flat glass, and fibreglass are formed of glass made by the melting process.

Viscosity is the key property in glass forming. After melting and conditioning (described in Industrial glassmaking), glass is delivered to a forming machine in a manageable shape at a.

As a glass-forming melt is cooled through the transition range, its structure relaxes, or changes continuously, from that of a liquid to that of a solid. The properties of solid glass reflect the extent of this structural relaxation.

Indeed, glass can be said to retain a memory of the temperature-time schedule through the transition. Application of Basic Science to Metallurgical Processing. Author: Yoshio Waseda,J. Toguri; Publisher: World Scientific ISBN: Category: Technology & Engineering Page: View: DOWNLOAD NOW» This book represents an extended introductory treatise on the atomic scale structure and physicochemical properties of oxide melts, mainly of silicates, from both the basic.

In book: Properties of Glass-Forming Melts. Cite this publication. Manoj Choudhary. ; Owens Corning; R Potter. a high flux solar simulator was used to melt glass forming batches. Initial. ISBN: OCLC Number: Description: pages: illustrations ; 25 cm: Contents: Glass-forming melts / L.

David Pye --Thermodynamic properties / Kaj H. Karlsson and Rainer Backman --Redox behavior and electrochemical behavior of glass melts / Christian Rüssel --Transport phenomena in molten glass: a continuum approach / Rand A.

Murnane and Robert R. The adjusted melt partial molar volume models can be used to develop realistic glass models, suggesting structural similarities between an oxide glass and its corresponding high‐temperature melt.

Recently acquired evidence for alkali borogermanate compositions indicates a shift toward the right for the GeO 6 ⇄GeO 4 equilibrium in GeO 2.

Similar features can be seen in the relationships between Al 2 O 3 concentration and liquid immiscibility as well as in glass-forming ability. Therefore melt properties that depend on water content can be (iii) effects of very high pressure on structure and properties of melts and glasses. This new book is an essential resource for.

As one of the most important properties of glass‐forming liquids, viscosity has drawn significant attention in both glass manufacturing and fundamental research.

We review the recent scientific progress in viscosity of glass‐forming systems, including both the liquid and glassy states. Yue, R. Brückner: A new description and interpretation of the flow behaviour of glass forming melts, J. Non-Cryst. Solids66–79 () CrossRef Google Scholar G. Adam, J.

Gibbs: On the temperature dependence of cooperative relaxation properties in glass-forming liquids, J. Chem. Phys. 43, – () CrossRef Google Scholar. 2. Fragile-to-strong transitions Viscosity anomaly.

It was recognize early on that the viscosity of certain liquids such as BeF 2 did not fit the universal pattern of fragility [].However, the first report of a FTS transition was made for water by Ito et al.

[].It was deduced from the mismatch between the highly fragile viscous flow at high temperature compared to the broad width of the T. Silicate Glasses and Melts, Second Edition describes the structure-property-composition relationships for silicate glasses and melts from a geological and industrial perspective.

Updated sections include (i) characterization of silicate melt and COHN fluid structure (with and without dissolved silicate components) with pressure, temperature, and redox conditions and responses of structural.

Get this from a library. Properties of glass-forming melts. [L David Pye; Angelo Montenero; Innocent Joseph;] -- Aimed at scientists, engineers, and researchers, this handbook provides a detailed overview of the chemical, physical, and thermodynamic properties and processes involved in glass melts.

Molecular dynamics simulations of Ni 36 Zr 64, Cu 65 Zr 35 and Ni 80 Al 20 were carried out over a broad range of temperature (– K) to investigate the Stokes–Einstein (SE) relation for glass-forming melts.

Our results reproduce experimental structural and transport properties. Results show that the breakdown temperature of the SE relation (T SE) equals the dynamical crossover.

The key role of chain flexibility in polymer glass formation has long been appreciated, but a fundamental understanding of how chain stiffness influences polymer glass formation remains elusive. In this work, we systematically investigate glass formation in unentangled linear polymer melts having variable chain stiffness using molecular dynamics simulation.

Basic thermodynamic and dynamic. Strong melts are those with (R D-1) melts are those with (R D-1) ≥ 1.

Fragility is related to materials bond breaking processes caused by thermal fluctuations. Bond breaking modifies the properties of an amorphous material so that the higher the concentration of broken bonds termed configurons the lower the viscosity.A. I. Priven: "Calculation of the Heat Capacity of Oxide Glass-Forming Melts and Evaluation of the Heat Capacity Jump in the Glass Transition Range from Chemical Composition"; Glass Physics and Chemistry, vol.

27, no. 5,p Properties of glass-forming melts / edited by L. David Pye, Angelo Montenero, Innocent Joseph.