Download PDF by : 45th Conference on Glass Problems: Ceramic Engineering and

ISBN-10: 0470320265

ISBN-13: 9780470320266

ISBN-10: 0470374268

ISBN-13: 9780470374269

This quantity is a part of the Ceramic Engineering and technological know-how continuing  (CESP) series.  This sequence encompasses a choice of papers facing matters in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain the teeth) and complicated ceramics. subject matters lined within the quarter of complicated ceramic comprise bioceramics, nanomaterials, composites, good oxide gas cells, mechanical homes and structural layout, complex ceramic coatings, ceramic armor, porous ceramics, and more.

Chapter 1 Furnace research utilized to Glass Tanks (pages 121–132): Robert H. Essenhigh
Chapter 2 Directed?Flow, Thin?Layer Glass Fusion approach (pages 133–141): John M. Alexander and Frank J. Lazet
Chapter three habit of Cruciform Regenerator Packing in an End?Fired Furnace: sensible effects after One crusade (pages 142–147): Pierre Bony
Chapter four New Forehearth Demonstrates power economic system and Temperature Uniformity: A Case historical past (pages 148–156): John F. Blumenfeld and Frank Bubon
Chapter five PPG Industries Glass Operations desktops (pages 157–171): Roy W. Yunker
Chapter 6 dealing with of rainy Sand for Glass Manufacture (pages 172–178): P. L. Start
Chapter 7 Observations at the Use of international Cullet (pages 179–189): Michael J. Hilson
Chapter eight Glass box Recycling replace with a dedication to the longer term (pages 190–195): T. J. Roberts
Chapter nine The fresh Air Act: Rain of bewilderment (pages 196–213): Robert A. Beck
Chapter 10 dirt Firing know-how within the Glass (pages 214–223): Werner Sieger
Chapter eleven Combustion ventilation keep watch over for Regenerators (pages 224–230): Joseph E. Poley
Chapter 12 program of Gas/Oxygen Burner expertise to enhance working potency of a Direct?Fired Glass Melter (pages 231–240): L. Kirk Klingensmith
Chapter thirteen publish Combustion NOX regulate expertise for Glass Furnaces, replace (pages 241–248): J. T. Destefano
Chapter 14 Oxygen regulate in a go with the flow Glass Tank (pages 249–257): Robert Gagne
Chapter 15 Noble Metals within the Glass (pages 258–268): Mark S. Rowe
Chapter sixteen Molybdenum?Lined electrical Forehearths (pages 269–273): Ashok L. Nayak
Chapter 17 The State?of?the?Art of Molybdenum Fabrication (pages 274–286): Ralph Eck
Chapter 18 functionality development of IS Machines with digital Timing (pages 287–293): Zia Haider and Frank Fischer
Chapter 19 Spent Refractories? The Recycling answer (pages 294–298): Craig Barrow

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Additional info for 45th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 6, Issue 3/4

Sample text

Since the temperature of the glass in the central portion of the channel is typically hotter than that of the glass at the sides, the cooling functions are designed to concentrate their activity at the center portion of 148 the channel, while the gas firing is confined substantially to the sides. To accomplish this, the roof structure has been designed with two downwardly projecting portions which effectively divide the space between the roof and glass into three sectors. Cooling air is completely removed from this space so that no intermingling with combustion products is even remotely possible.

Fig. 11. The 540 control loop showing location of temperature sensors. 155 Fig. 12. Schematic view of temperature distribution ( "C) . 156 Ceramic Engineering and Science Proceedings Charles H. YUNKER PPG Industries, 1 PPG Place Pittsburgh, PA 15272 Engineering process control in PPG is dedicated to the premise that computer process control should be an effectively transparent tool for production management requiring minimal low cost support from both hardware and software viewpoints and contributing to improved yields and throughputs.

In another recently introduced design (Fig. 2) the cooling air has been appropriately introduced and directed to flow lengthwise in the central portion of the forehearth. This has reportedly had a significant benefit in improving the energy economy of the forehearth, since the gas firing system can operate to heat the edges of the channel without interference from the cooling wind. Also, the hotter glass in the central portion of the forehearth is preferentially cooled, resulting in much improved temperature uniformity of the glass.

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45th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 6, Issue 3/4

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