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Download PDF by Charles H. Drummond III: 71st Glass Problems Conference. Ceramic Engineering and

By Charles H. Drummond III

This factor incorporates a selection of papers offered on the 71st convention on Glass difficulties, October 19-20, 2010 on the Ohio nation college, Columbus, Ohio. subject matters contain glass melting; glass technological know-how, defects; defense; refractories; recycling; controls; and uncooked fabrics.

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Additional info for 71st Glass Problems Conference. Ceramic Engineering and Science Proceedings, Volume 32, Issue 1

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The critical feature of such standard melters is the comparatively shallow glass depth of about 1100mm to 1300mm. As mentioned above the bottom temperature will rise up to a critical limit when a solar glass composition is produced in such a 36 ■ 71st Conference on Glass Problems Solar Glass Melting tank. Due to this it is very common to significantly reduce the throughput in such a case. The disadvantage of the use ofthat manufacturing process in general is the panel surface resulting from that float process.

20 Patent registered. Not shown on this drawing. This device mechanically loosens the batch in the pre-drying zone at the top of the preheater to avoid any sticking. 21 Patent registered. 18 19 14 ■ 71st Conference on Glass Problems Recent Developments of Batch and Cullet Preheating in Europe Waste gas conduction Steam discharge Max. waste temperature Max. batch humidity Min. cullet value internal / external yes gas completely internal yes, improved 600 °C 650 °C max. 5% min. 60% tested > 5% tested < 20% 2i The new type is mainly based on the indirect system, however, with now small openings in the flue gas channels for removal of the evaporated water from the batch & cullet.

5,611,682. S. Patent and Trade Office. 5 D'Agostini M. S. Patent No. 7,390,189. S. Patent and Trade Office. 24 • 71st Conference on Glass Problems Oxy-Fuel Conversion Reduces Fuel Consumption in Fiberglass Melting Figure 4: Cleanfire® HRi™ Burner Technology The basic principle of the Cleanfire® HRi™ burner is that the flame starts at the metal burner nozzle and propagates through the refractory precombustor without touching the precombustor's walls. Oxygen always flows around the flame to protect the burner block from high flame temperatures.

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71st Glass Problems Conference. Ceramic Engineering and Science Proceedings, Volume 32, Issue 1 by Charles H. Drummond III

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