Chapter 1 The Deming method After three hundred and sixty five days: One Company's event (pages 1–13): H. R. Crick, H. Golczynski and G. G. Vining
Chapter 2 picking out and Controlling Sampling and trying out error in SPC (pages 14–26): P. N. Sheldon and R. A. Landy
Chapter three results of Oxidation?Reduction Reactions in Magnesia?Graphite Compositions (pages 27–39): Yu?Lian Lin and Charles E. Semler
Chapter four Selective Leaching of Extruded Cordierite Honeycomb buildings (pages 40–51): Thomas H. Elmer
Chapter five Zircon Processing (pages 52–57): ok. ok. Cheang
Chapter 6 Refractories for Torpedo automobiles (pages 58–74): Saburo Miyagawa, Makoto Yokoi, Akira Mastuo, Tadashi Morimoto and Tastuo Kawakami
Chapter 7 Water version scan of the Refractory?Lined Lance to Inject Oxygen right into a Molten Iron bathtub (pages 75–78): ok. Kurata
Chapter eight research of Silicon Carbide Refractories after carrier in Blast Furnaces (pages 79–99): Donald okay. Henry and Roy W. Brown
Chapter nine improvement and homes of Silicon Carbide Refractories for Blast Furnace Use (pages 100–118): D. Campos?Loriz and Thomas R. Holmes
Chapter 10 development on Carbon?Bearing Refractories for the BOF (pages 119–130): Yoichi Naruse, Keisuke Hiragushi, Sukekazu Kiwaki and Ichiro Takita
Chapter eleven contemporary Technological developments of floor Coating Refractories for CC Tundish Liners (pages 131–144): okay. Watanabe, S. Fujisaki and T. Takeshige
Chapter 12 Nondestructive checking out of Refractories utilizing business X?ray Computed Tomography (pages 145–166): Yoshiro Aiba, Oki Kazuo, Arakawa Kazumi and Shigeo Matsuura
Chapter thirteen Observations at the Thermomechanical habit of Refractory Linings of Cylindrical?Type Shells (pages 167–184): Charles A. Schacht
Chapter 14 excessive energy Insulation for metal Ladles (pages 185–195): Valerie E. Mccallen
Chapter 15 size of houses to be used with Finite point research Modeling (pages 196–208): M. A. Stett
Chapter sixteen greater Analytical tactics and fabric houses for Predicting the Thermomechanical habit of Refractory Linings of Teeming Ladles (pages 209–219): Charles A. Schacht
Chapter 17 Compressive energy and Creep habit of a Magnesium Chromite Refractory (pages 220–228): Ralph F. Krause
Chapter 18 Optimizing Corrosion?Resistant Monolithic functionality by using twin Lining structures (pages 229–235): Curtis E. Zimmer
Chapter 19 software of Vibratory Castables in Petrochemical Industries (pages 236–242): Subrata Banerjee
Chapter 20 Microstructural features of Microsilica?Blended excessive Alumina Castables (pages 243–260): A. Seltveit, G. S. Dhupia and W. Kronert
Chapter 21 the consequences of Curing Temperature and occasions on Low?Moisture Trough Castables (pages 261–266): Robert A. Howe and John A. Kaniuk
Chapter 22 ANCHOREX Anchoring process (pages 267–268): E. Olsen
Chapter 23 New excessive Chrome Fused solid Refractory to be used involved with hugely Corrosive Glasses (pages 269–276): T. A. Myles and F. Knee
Chapter 24 impact of Cement uncooked Meal Composition on Lining lifestyles (pages 277–283): T. ok. Das, R. De los angeles Garza and J. C. Davila
Chapter 25 value of the Modulus of Elasticity on simple Refractory Brick for Cement Rotary Kilns (pages 284–291): R. de l. a. Garza
Chapter 26 Corrosion of Ceramic Refractories in artificial Coal Slags made up our minds via the Rotating?Cylinder process (page 292): Sherman Greenberg and Roger B. Poeppel
Chapter 27 Monolithic Refractory difficulties in a Gasifier (pages 293–300): G. N. Zirczay
Chapter 28 Corrosion Resistance of Ceramic fabrics to HCl, HNO3, and H2SO4 (pages 301–313): James P. Bennett
Chapter 29 courting of Creep houses of Bauxite Refractories with Microstructure (pages 314–323): Xiangchong Zhong, Gengcheng sunlight and Rushan Yin
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Extra resources for Applications of Refractories: Ceramic Engineering and Science Proceedings, Volume 7, Issue 1/2
Thanks are also due Dr. H. , Ipoh, Malaysia for reviewing the manuscript. References IH. Hussin and K. C. Chin, “Design Considerations Related to Energy Consumption and Costs of Material Transport and Beneficiation in Malaysian Gravel Pump Mines,” Seatrod Centre Tech. Publ. No. 3, 59-70 (1983). -- IV. 4. 9-18 119831. --, ’ 3B. H . Flinter, “The Magnetic Separation of Some Alluvial Minerals in Malaya,” Am. , 44, 738-51 (1959). ~ 4D. Santokh Singh and L. H. Teoh, “Applied Mineralogy in Relation to Alluvial Tin Ore Beneficiation,” Seatrud Centre Tech.
Conclusions This study of a controlled series of four size-graded MgO-graphite compositions, containing no metal additions, has provided new experimental data regarding the formation of a dense MgO zone. A series of photomicrographs is presented showing the dense MgO zone development in the different sizegraded samples as a function of firing time. ), used as a measure of the dense zone uniformity, also gave a general indication of the dense zone integrity. As the firing time was increased (up to 90 min) for a given sample particle sizing, the quality index and the dense zone thickness increased.
BATCH 1000 I I 2 3 4 I I I I Fig. 11. Permeabilityplotted by positions and batches. 25 2600 - w 2400- 2 2 2200- y 2000- F z >- PLUGS X POSITIONS INTERACTION FOR BATCH I PLUG 5 PLUG 4 PLUG 3 c- a 1800- w a 16001400- 1200’ I 2 3 4 POSITION NUMBER 5 Fig. 12. Permeability plotted by positions for all plugs of batch 1. 26 Ceramic Engineering and Science Proceedings Charles R. , 1986 Effects of Oxidation-Reduction Reactions in Magnesia-Graphite Compositions Yu-LIANLIN and CHARLES E. SEMLER Ohio State Univ.
Applications of Refractories: Ceramic Engineering and Science Proceedings, Volume 7, Issue 1/2