Application of Refractories: Ceramic Engineering and Science

Content:
Chapter 1 improvement and alertness of Chrome?Alumina Refractories (pages 1–10): Terry M. Fraser
Chapter 2 effect of Carbon at the Microstructure of Periclase Refractories (pages 11–20): H. Emlemdi and J. R. Blachere
Chapter three impression of Anisotropic Thermal enlargement at the energy of Phosphate?Bonded Al2O3 Bicrystals (pages 21–31): Morteza Soltani and James F. Benzel
Chapter four instructed extra fabric info for comparing the Mechanical energy of Refractories (pages 32–38): Charles A. Schacht
Chapter five Refractory Castables for Alumina aid Cells (pages 39–42): Douglas V. Steward and Alton T. Tabereaux
Chapter 6 Refractories for Aluminum Salt bathtub functions (pages 43–60): John Y. Liu and S. D. Day
Chapter 7 research of equipment for comparing Monolithic Refractories for Molten Aluminum Containment, II (pages 61–66): Russell W. Rothrock
Chapter eight High?Fired Refractories for non-stop Casting of metal (pages 67–73): Subrata Banerjee and Gary L. Ramsey
Chapter nine improvement of Monolithic (Castables) metal Ladles at Gary Works (pages 74–81): Timothy L. Nosbisch, Richard M. Wardrop, John A. Kaniuk and Ian D. Prendergast
Chapter 10 New AZS Chromic Oxide Refractory for Wool Fiber?Glass Melting Furnaces (pages 82–90): T. M. Wehrenberg and C. N. McGarry
Chapter eleven procedure keep an eye on and caliber coverage of Calcium Aluminate Cements (pages 91–104): C. M. George and R. P. Racher
Chapter 12 Optimization of Refractory homes via Statistical layout (pages 105–120): H. David Leigh
Chapter thirteen SPC—The route to constant Refractory Brick caliber (pages 121–128): Harold S. White and Frank J. Hrbolich
Chapter 14 SPC at Mulcoa (pages 129–139): Dilip C. Jain
Chapter 15 Thermal and Mechanical houses of Fly Ash?Calcium Carbonate Refractory fabrics (pages 140–153): C. C. Chiu and E. D. Case
Chapter sixteen Regenerative warmth restoration utilized to Periodic Kilns (pages 154–157): Fred C. McMann

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Extra info for Application of Refractories: Ceramic Engineering and Science Proceedings, Volume 9, Issue 1/2

Sample text

6. Cross section of aluminum cup test samples of ultra-low cement castable ULCC-T being prefired to different temperatures prior to the tests. 7075 alloy at 816°C (1500°F) for 72 h. Fig. 7. Cross section of aluminum cup test samples of ultra-low cement castable ULCC-B being prefired to different temperatures prior to the tests. 7075 alloy at 816°C (1500°F) for 72 h. 175 Pore Oiameter. micron Fig. 8. Pore size distribution of brick. Medium Cement Ca9toble MMC-2 100 90 80 70 50 40 30 20 10 0 50 30 40 0 Fig.

Cerum. Soc.. 62 [lo]949-54 (1963). ‘M. P. David, “Pressure Sintered Alumina Bicrystals,” J. Am. Cerum. 47 [9]463-64 (1964). ’H. Y. B. Mar and W. D. Scott, “Fracture Induced in A1,0, Bicrystals by Anisotropic Thermal Expansion,” J. Am. Cerum. Soc.. 53 [lo],555-58 (1970). ‘D. W. Scott, “Fabrication of Bicrystals of Aluminum Oxide,” Truns. Brit. Cerum. , 66 [7]315-18 (1%7). ‘W. D. Kingery, H. K. Bowen, D. R. Ulman, pp. 728-31 in Introduction to Ceramics, John Wiley and Sons, New York, NY, 1976. 26 ‘J.

8. Variation of tensile strength and maximum thermal expansion mismatch of (NaPO,),, bonded (OOOl)(ll20)alumina bicrystals as a function of curing temperature. 31 Ceramic Engineering and Science Proceedings William J. Smothers Copyright 0 1988, The American Ceramic Society, Inc Ceram. Eng. Sci. , 9 [l-21 pp. 32-38 (1988) Recommended Additional Material Data for Evaluating the Mechanical Strength of Refractories CHARLES A. , Pittsburgh, PA 15235 Thermomechanicalstudies ofvarious refractory systemshave shown that thermal expansion stresses from transient stresses and thermal restraints are more significant than dead load stresses frommaterial and equipment weight.

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