Author/Authors :
assa, farnaz academic center for education, culture and research (acecr) - modern ceramic materials institute, yazd, iran , sharifi, leila academic center for education, culture and research (acecr) - modern ceramic materials institute, yazd, iran , mirhosseini, hossein academic center for education, culture and research (acecr) - modern ceramic materials institute, yazd, iran , ajamein, hossein academic center for education, culture and research (acecr) - modern ceramic materials institute, yazd, iran , etemad, arash university of yazd, yazd, iran
Abstract :
in this study, the influence of the zirconia addition on the properties and microstructure of alkali magnesia refractories without chrome band spinels was investigated. for this purpose, a primary formula based on magnesia and alumina to form spinel was considered, and different amounts of zirconia were added to achieve various samples. after thermal treatment at 1500 ̊c and 1600 ̊c, the physical and mechanical properties of fabricated samples such as density, apparent porosity, cold compressive and bending strength, refractoriness under load, and warm modulus of rupture according to astm were evaluated. the physical and mechanical properties of zirconia contained samples revealed that the addition of zirconia led to the formation of zir-conate-based phases like magnesium zirconate, and calcium zirconate. this phase can be expanded by the thermal stresses due to its thermal mismatch with the phases of the field and improved the mechanical properties by creating microcracks in the structure. addition of 2% by weight of zirconia increased the density from 2.8 g/cm^3 to 2.95 g/cm^3 at 1600 °c. compressive strength also increased from 315 kg/cm^2 to 550 kg/cm^2 and flexural strength from 35 kg/cm^2 to 65 kg/cm^2.
Keywords :
refractories material , magnesia alkaline brick , zirconia , spinel phase