Fundamentals of Refractory Technology (häftad)
Format
Häftad (Paperback / softback)
Språk
Engelska
Antal sidor
316
Utgivningsdatum
2006-03-01
Upplaga
1
Förlag
Wiley-American Ceramic Society
Medarbetare
Smith, Jeffery D.
Illustrationer
black & white illustrations
Dimensioner
231 x 155 x 15 mm
Vikt
431 g
Antal komponenter
1
Komponenter
23:B&W 6 x 9 in or 229 x 152 mm Perfect Bound on White w/Gloss Lam
ISSN
1042-1122
ISBN
9781574981339

Fundamentals of Refractory Technology

Proceedings of the Lecture Series Presented at the 101st and 102nd Annual Meetings Held April 25-28, 1999, in Indiana and April 30-May 3, 2000, in Missouri

Häftad,  Engelska, 2006-03-01
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This updated reprint provides up-to-date information on refractories technology presented by recognized experts in the field. Produced from focused sessions of two Refractory Ceramics Division meetings, refractory scientists from around the world were invited to provide overviews of the scientific principles related to refractory manufacturing and performance. The result is this informative volume and a current view of the Fundamentals of Refractory Technology. Proceedings of the Lecture Series presented at the 101st and 102nd Annual Meetings held April 25-28, 1999, in Indiana and April 30-May 3, 2000, in Missouri; Ceramics Transactions, Volume 125.
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Övrig information

James P. Bennett is the editor of Fundamentals of Refractory Technology, published by Wiley. Jeffrey D. Smith is the editor of Fundamentals of Refractory Technology, published by Wiley.

Innehållsförteckning

Preface vii 1999 Focused SessionsIndianapolis, Indiana, April 26, 1999 Particle Size Distribution as a Predictor of Suspension Flow Behavior 3 R.M. German Rheology and Plasticity for Ceramic Processing 29 W.M. Carty The Nature of Chemical Reactions That Occur During Castable Installation and Analytical Techniques Used to Follow These Reactions 53 CD. Parr, C. Revais, and H. Fryda High-Temperature Mechanical Behavior of Magnesia-Graphite Refractories 73 C. Baudin Needed Fundamental Thermomechanical Material Properties for Thermomechanical Finite Element Analysis of Refractory Structures 93 CA. Schacht Porous Ceramic Simulation of Reservoir Rocks Determination of Porosity by Electric Permittivity Measurements 103 J. Lira-Olivares, D. Marcano, C. Lavelle, and F. Snchez Corrosion of Industrial Refractories 135 M. Rigaud 2000 Focused SessionsSt. Louis, Missouri, May 1,2000 Application of Thermochemistry to Refractories 157 A.Yamaguchi Creep Measurement and Analysis of Refractories 171 J.G. Hemrick and A.A. Wereszczak Corrosion of Refractories in Glass-Melting Application 195 S.M. Winder and K.R. Selkregg Oxyfuel Firing Effects on Refractories 223 R.E. Moore, M.Velez, M. Karakus, and W.D. Headrick Cold Setting Cordierite Castables 235 E.F. Aglietti, N.E. Hipedinger, and A.N. Scian Different Types of in situ Refractories 245 W.E. Lee, S. Zhang, and H. Sarpoolaky The Use of Modeling in Refractories 253 C.E. Semler Bath Penetration of Barrier Refractories for Aluminum Electrolytic Cells 261 G. Oprea Interfacial Phenomena 289 C.Allaire Index 309