By Charles H. Drummond III
Remain updated with this number of papers awarded on the 69th convention on Glass difficulties on the Ohio country collage. subject matters contain melting and molding, refractories, and environmental concerns and new products.Content:
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Extra resources for 69th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 30, Issue 1
See figure 8. Figure 9 shows the measured bubbles sizes during heating and during fining at different temperatures for three float glass melts pretreated in a water containing atmospheres. The average growth rate of 20 bubbles are given per data point. The water content in the melt before the fining experiments has been measured by IR spectroscopy. 69th Conference on Glass Problems . 25 Fining of Glass Melts: What We Know about Fining Processes Today The same figure shows curves for the predicted gas release using a gas evolution model described elsewhere".
It is not likely that this fining stage of thermal sulfate decomposition will be met for batches at less oxidized conditions (high amount or cokes or organic materials). Water vapor and helium will reduce the fining onset temperature and will increase the release of gases during fining (in case that fining agent addition to batch has not been changed). ACKNOWLEDGEMENT: The author expresses his thanks to Ing. Mathi Rongen from TNO for supporting this study by experimental investigations. 9. LITERATURE REFERENCES 1.
The stability of the batch layer is given for the lower level. Under estimation of the same parameters but with a 30 cm higher horizon of batch layer the stability can not be reached because of the energy density peaks exceeds to approximately 2000 kW/m*. Figure 16 Local excess of energy density of the batch layer In case of the entire bottom electrodes would have been exchanged by top electrodes and the batch layer is at the higher layer horizon of those that were mentioned above, the positive effect of top electrodes concerning stability of the batch layer is significantly.
69th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 30, Issue 1 by Charles H. Drummond III