
Glass is still a cloth of significant medical and technological curiosity; besides the fact that, the commercial pressures at the glass undefined, the emphasis on international markets, and the global cognizance to power and environmental conservation proceed to extend. Forty-seven papers provide new ideas to the demanding situations of glass production, really as they pertain to melting and forming.Content:
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Glastech. Ber. Sonderband 63K (1990), pp. 222-242 12 F. Krämer: "Mathematisches Modell der Veränderung von Glasblasen in Glasschmelzen," Glastech. , 52 (1979) nr. 2, pp. 43-50 13 L. Némec: "The behaviour of bubbles in glass melts. Part 2. , 21 (1980) nr. 3. pp. 139-144 14 M. Mühlbauer and L. Némec: "Einfluß der Gase einer Glasschmelze auf das Verhalten von Gasblasen unter isothermer Bedingungen," Glastech. f 54 (1981), nr. 12, pp. 389-399 15 L. Némec: "The behaviour of bubbles in glass melts. Part 1.
Removal of dissolved gases and gas bubbles. This model describes the production of gases from fining agents and reduction-oxidation reactions in the melt, and it predicts the diffusion of all present gases from the melt to a bubble or vice versa. The model predicts a strong improvement in fining quality when adding small amounts of cerium oxide to oxidized floatglass-type melts. Also, helium bubbling prior to fining will enhance bubble removal in the primary fining stages. These predictions are in agreement with the trends found by laboratory experiments.
9-10, pp. 436-440 32 J. Gailhbaud and M. Zortea: "Recherches sur la coalescence des bulles dans un liquide visquex," Rev. Gen. Therm. 8 (1969), pp. 433-453 33 J. Zluticky: "Bestimmung des im Glas gelösten Kohlen- und Schwefeldioxides über die gaschromatografischer Analyse," Glastech. , 47 (1974), nr. 10, pp. 232-238 34 J. Zluticky, J. Stverak and L. Némec: "Bestimmung der im Glas gelöste Gase über die Hochtemperatur-Vakuum-Extraktion und die gaschromatografische Analyse," Glastech. , 45 (1972) nr.