GLASS FORMATION, STRUCTURE, AND PROPERTIES & THE TECHNOLOGY OF GLASS MELTING

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1 GLASS FORMATION, STRUCTURE, AND PROPERTIES & THE TECHNOLOGY OF GLASS MELTING 7-11 th July 2014 MONTPELLIER, FRANCE Contact: Scientific Program

2 List of lecturers Klaus Bange (ex Schott AG) Ruud Beerkens (Celsian) Marie-Helene Chopinet (St Gobain) Reinhard Conradt (Aachen) Laurent Cormier (Paris) Joachim Deubener (Clausthal) Alicia Duran (Madrid) Bernard Hehlen (Montpellier) A Lankhorst (Celsian) Hayo Mueller-Simon (DGG-HVG) Eric Muijsenberg (Glass Services) Sener Oktik (Şişecam) John Parker (Sheffield) Akira Takada (Japan) R Vacher (Montpellier)

3 ICG Summer School: Education & Training GLASS Purpose Education of young glass scientists & engineers Contents of course MONDAY JULY 7 th Glass Science Glass Technology L1. 08:45 Brief Introduction to the Course and to ICG (JP) Brief Introduction to the Course and to ICG (JP) L2. 09:00 Key physical properties of industry: viscosity, thermal expansion (M-HC) Key physical properties of industry: viscosity, thermal expansion(m-hc) L3. 09:45 Glass colour and redox chemistry. Optical absorption and colour coordinates. Very transparent glasses for PV, telecoms (JP) L Key physical properties of industry: heat conduction and diffusion (M-HC) L Chemical aspects of structure and structure-property trends. Relationship between structure and properties using thermodynamics (RC) Students describe their own research activities (5 slides/minutes per person). Glass colour and redox chemistry. Optical absorption and colour coordinates. Very transparent glasses for PV, telecoms (JP) Key physical properties of industry: heat conduction and diffusion (M-HC) Presentation on Innovation in Glass Industry by R&D manager of Industry (SO) Students describe their own research activities (5 slides/minutes per person) Evening welcome reception Evening welcome reception

4 L L L L TUESDAY JULY 8 th Glass Science Glass melt & Batch properties Thermodynamics and energy demands for batch-to-melt conversion (RC) Neutron and X-ray diffraction. Results for various oxide and non-oxide glasses (LC) Atomistic simulations of structure. Reliability, limitations, problem solving (AT) EXAFS. Method and results for a range of glass types (LC) Chemical durability. Measurement and standards. Physical chemistry and mechanisms of corrosion. Effect of composition. (RC) Batch calculations/batch compositions(rc) Preparation of batch in the glass industry (RB) Redox and sulphur chemistry in glass melts (HM-S) L Project allocation Project allocation Start work on project Start work on project L Introduction to Sol Gel synthesis. Chemistry and Physics of process. Resulting properties of material (AD) Redox and sulphur chemistry in glass melts (HM-S)

5 WEDNESDAY JULY 9 th Crystallisation/phase Processes during glass separation melting Dissolution of sand in glass melting processes (RB) L Liquid-liquid phase separation. Nucleation and Crystallisation. Nanocrystallisation. Particle coarsening. (JD) L L L L Ion exchange. Diffusion profiles, particle growth. Mechanical and optical properties (JP) Glass ceramics: their manufacture and properties. Some key examples of applications (JD) Calculating phase equilibria and chemical activities in melts with exercises (RC) Analytical techniques for surface and thin film characterization (KB) FREE AFTERNOON Gases in Glass melts (RB) Fining of glass melts - primary and secondary (RB) Calculating phase equilibria and chemical activities in melts with exercises (RC) Analytical techniques for surface and thin film characterization (KB)

6 THURSDAY JULY 10 th Structure Glass furnaces L Key glass properties: Glass furnace designs (EM) applications and current frontiers in research. (RC) L Vibrations in Glasses: basics Glass furnace operation (EM) of IR absorption and scattering. Scattered light spectroscopies: what they tell us about structure. (BH) L Atomistic simulations and glass properties (AT) Combustion processes & heat transfer in glass melting L Inorganic and Hybrid Sols and Suspensions. Structure and Properties (AD) processes (AL) Computational Fluid Dynamics (CFD) for Modelling for Combustion Space & Glass Melt (AL) L Surfaces and thin films for future applications (KB) Energy balances of glass furnaces (AL or RB) Project workshops Project workshops 16:15 Tutorial on calculating Raman activity (BH) Refractory glass melt interactions (RB) Product development in the Glass Industry (KB) Evaporation from melts & emissions (RC) Conference Dinner Conference Dinner

7 FRIDAY JULY 11 th Student Presentation of projects Student Presentation of projects Conference closes with lunch

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