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Mineral and Chemical Changes in Silica Brick After Service in Arc-furnace Roofs
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J. Korean Ceram. Soc.. 1981;18(4):247

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Petrological-chemical investigation of pShSP brick after service in the roof of an open-hearth furnace
Refractories. 1968;9(1-2):94-97   Crossref logo
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Zonal change in the properties of magnesite brick after service in the roof of an open-hearth furnace
Refractories. 1963;4(9-10):445-450   Crossref logo
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CONSTITUTION AND THERMAL EXPANSION OF SILICA COKE-OVEN BRICK AFTER SERVICE*
Journal of the American Ceramic Society. 2006;16(1-12):102-102   Crossref logo
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Advances in chemical and physical properties of electric arc furnace carbon steel slag by hot stage processing and mineral mixing
Journal of Hazardous Materials. 2015;283:89-97   Crossref logo
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Service of silica brick in glass tank furnaces
Glass and Ceramics. 1962;18(9):479-480   Crossref logo
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Chemical and mineralogical changes in magnesite-chromite bricks during service in roofs of open-hearth furnaces
Refractories. 1969;10(3-4):236-240   Crossref logo
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Classification of brick zones after service
Refractories. 1966;7(9-10):540-540   Crossref logo
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98/03291 Simulation of attack by dust from blast-furnace gas cleaning on a silica-alumina refractory brick
Fuel and Energy Abstracts. 1998;39(4):304   Crossref logo
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Effect of article properties and operating parameters on the service life of open-hearth furnace roofs
Refractories. 1994;35(5):162-164   Crossref logo
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1018. The effect of alloying elements on oxygen and nitrogen contents of steel after vacuum-arc furnace remelting
Vacuum. 1967;17(5):303   Crossref logo
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