This quantity is a part of the Ceramic Engineering and technology continuing (CESP) series. This sequence features a selection of papers facing concerns in either conventional ceramics (i.e., glass, whitewares, refractories, and porcelain tooth) and complicated ceramics. issues lined within the quarter of complex ceramic comprise bioceramics, nanomaterials, composites, reliable oxide gasoline cells, mechanical houses and structural layout, complicated ceramic coatings, ceramic armor, porous ceramics, and more.
Chapter 1 Pelletizing and Recycling of dirt from and to a Lead Glass Furnace (pages 1–8): Robert Hinkle, Jeffrey T. Lowry and Larry Tock
Chapter 2 Philosophy, rules, and Implementation of constant development (pages 9–18): Chris Hamlin and Gordon Stewart
Chapter three Minimizing Glass Batch expenses via Linear Programming (pages 19–24): D. W. Anderson
Chapter four Sulfate usage in go with the flow Glass construction (pages 25–42): W. B. Gibbs and Warren Turner
Chapter five Nonmetallic Liners in Batch dealing with gear (pages 43–49): J. H. Chaney, M. J. Newman and M. J. Pratko
Chapter 6 impression of power Codes at the Glass (pages 50–61): Merle F. Mcbride and Mark L. Bulger
Chapter 7 Recycling of Electrostatic Precipitator airborne dirt and dust from Glass Furnaces (pages 62–72): David T. Boothe, Harold Severin and Clint Braine
Chapter eight Refractory Recycling advancements (pages 73–77): John Noga
Chapter nine the applying of a Mass warmth Extractor to extend the Pull of a Forehearth (pages 78–89): Charles Henry Viel and G. M. Stanley
Chapter 10 the dep. of Energy's learn and improvement application for the Glass production (pages 90–98): William A. Obenchain
Chapter eleven superior box functionality via power Enhancement Coatings (pages 99–111): P. O. Austel and S. W. Carson
Chapter 12 fresh Air Act Amendments NOx Compliance Requirements—Glass (pages 112–117): Anthony J. Gallo
Chapter thirteen Oxy?Fuel Firing for Emissions keep an eye on on a box Melter (pages 118–130): Carlos Herrera F. and Gabriel Noboa
Chapter 14 prestige document at the improvement of an Oxygen?Fuel?Fired Forehearth (pages 131–146): John T. Brown, William P. Coppin, Alan Stephens and Richard W. Marshall
Chapter 15 Minimization of NOx Emissions with superior Oxy?Fuel Combustion: managed Pulsated Combustion (pages 147–158): Sophie Drogue, Shannon Breininger and Roberto Rurz
Chapter sixteen fresh Firing of Glass Furnaces by using Oxygen (pages 159–174): Prince B. Eleazer and Aleksandar G. Slavejkov
Chapter 17 concerns and leads to employing Oxygen Firing to commercial Glass Melters (pages 175–185): William J. Snyder, Frederic N. Steigman and Abilio Tasca
Chapter 18 Conversion of a Fiberglass Furnace from a hundred% electrical Firing to Oxy?Fuel Combustion (pages 186–190): Daniel Ertl and Arlene Mcmahon
Chapter 19 A Partial Conversion of a Gas?Air?Fired tv Furnace to Oxy?Fuel Combustion (pages 191–195): Arlene McMahon and Maynard Ding
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Extra info for A Collection of Papers Presented at the 54th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 15, Issue 2
Thispaper deals with the business forces that faced Consumers Glass, and the role of continuous improvement (CI) in the company in changing the culture and way of doing business in order to return to profitability. The authors give an overview of the key elements of the recoveiyplan, then, in more detail, discuss the change principles and philosophy employed, and the initiatives undertaken to enhance teamwork and break down traditional @fictional silos. Examples of the types of projects tackled and the measurements used to launch (and institutionalize) the CI process are discussed.
12 These exciting but uncoordinated improvement activities needed a central focus. The organization embraced continuous improvement, focused initially on quality, as a cultural value. It became obvious that extending CI to the broad organization represented a powerful competitive capability. In early 1992, a CI mandate was formalized and specific resources allocated t o implement it. With no clear understanding of our readiness for this profound change in company culture, a series of pilots had been initiated.
The silica scum associated with downtank melter foam is one measure of the effectiveness of this mechanism. 3. In addition to the liberation of gas, thermal reduction of Na2S0, produces N a 2 0 as a reaction product. When nucleated on a sand grain surface, 33 dissolution and reaction of the sand will be accelerated by the thermal reduction of Na2S0, to Na,O. 4. The evolution of a large quantity of gas enhances the thermal convection by increasing the thermal buoyancy force. When these factors are manipulated correctly, essentially all of the seeds and bubbles can be grown to a size large enough to be forced to the surface by Stokes rise, and the unreacted melting relics can be either floated to the surface, or reacted with the glass.
A Collection of Papers Presented at the 54th Conference on Glass Problems: Ceramic Engineering and Science Proceedings, Volume 15, Issue 2