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Chapter 1 influence of Dopants at the Creep habit of Low and Ultra?Low Cement Refractory Concretes (pages 1–8): Cheng?Hwa Liu, Jose Luis Mendoza and Robert E. Moore
Chapter 2 overview of Abrasion?Resistant Monolithic Refractories (pages 9–12): G. N. Zirczy
Chapter three resources of Variability within the ASTM C?704 Abrasion Resistance try approach for Monolithic Refractories (pages 13–20): C. E. Chaille
Chapter four Controlling the atmosphere fee in Phosphate?Bonded Spinel structures (pages 21–31): Alan Cisar
Chapter five power trying out of Mortars (pages 32–40): D. S. Blum
Chapter 6 the consequences of Long?Term Heating at the Thermal surprise houses of uncomplicated Refractories (pages 41–49): Donald J. Griffin and Thomas G. Miller
Chapter 7 improvement and function of latest excessive Tech Monolithic Refractories for Molten Aluminum functions (pages 50–62): Robert J. Milauskas
Chapter eight software of Ceramic Foam Filters in Molten steel Filtration (pages 63–74): J. W. Brockmeyer and L. S. Aubrey
Chapter nine Ceramics in warmth Exchangers—An evaluation replace (pages 75–80): B. D. Foster
Chapter 10 development record on box trying out of All?Ceramic Tube?in?Shell Recuperators (pages 81–84): R. G. Graham
Chapter eleven actual features of a Porous Silica fabric shaped by means of Pyrolysis of Silicone Rubber (pages 85–92): Kew?Ho Lee and Soon?Jai Khang
Chapter 12 Operational positive aspects and result of a automatic, Radial warmth movement tool for deciding upon Thermal Diffusivity and Conductivity (pages 93–105): G. S. Sheffield and M. Vukovich

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Additional resources for Application of Refractories: Ceramic Engineering and Science Proceedings, Volume 8, Issue 1/2

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39 40 Application of Refractories Editor William J. , 1987 Ceram. Eng. Sci. , 8 [I-21 pp. 41-49 (1987) The Effects of Long-Term Heating on the Thermal Shock Properties of Basic Refractories DONALDJ. GRIFFIN J. E. Baker Company Box 1189, York, PA 17405 THOMASG. MILLER Dolomite Brick Corp. Box 2028, York, PA 17405 Basic brick wed In rotary cement kiln applications are sometimes exposed to temperaturesconsiderably higher than the kilns are normally operated. When conditions of overheating occur, the thermal shock properties ofthe brick can be sewrely aflected due to changes In the physical structure and properties of the brick.

In addition, the attack of the clinker liquids on the brick components can weaken the structure, making it more susceptible to damage by mechanical stressing. Chemical and physical changes produced on basic bricks by clinker infiltration is well There is, however, little information concerning the pure thermal effects which overheating has on various properties of basic brick. As a result, a test procedure was developed to evaluate the effects overheating had on the thermal shock properties of various basic refractories.

Although this test method is designed for room temperature testing of oven-dried joints, it is easily adapted to elevated temperature testing. Failure Mechanisms Method C-198 was designed to measure the ability of a mortar to bond given brick types. When testing various mortars, it was noticed that the common location of failure was between the mortar-brick interface. This observation was made on super-duty brick and both a 70 and 60%alumina brick, joined with chemicaland clay-bonded mortars of different alumina contents obtained from various manufacturers.

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