在不使用传统天然材料的情况下,利用冶金废料获得了耐酸材料

V. Abdrakhimov, E. Abdrakhimova
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引用次数: 0

摘要

耐酸材料是在冶金废料--锆钛铁矿重力 "尾矿 "中的粘土部分(用作粘土粘合剂)和铁铬铝熔渣(用作驱避剂)--的基础上获得的,无需使用天然传统材料。研究发现,在陶瓷成分中加入铁铬铝熔渣有助于形成高耐火性矿物(刚玉、镁尖晶石、氧化铬、锰铝铁矿和马来铁矿),在 1300 °C 的烧制温度下,这些矿物会增加化学、物理和机械指数。
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Acid-resistant material was obtained on the basis of metallurgy waste without the use of traditional natural materials
Acid-resistant material is obtained on the basis of metallurgy wastes ― clay part of «tails» of gravity of zircon-ilmenite ores, used as clay binder and ferrochromic aluminothermic slag, used as a repellent without using natural traditional materials. It has been found that the introduction of ferrochromic aluminothermic slag into the ceramic compositions contributes to the formation of highly refractory minerals (corundum, magnesia spinel, chromium oxide, bonite and mayenite), which increase chemical, physical and mechanical indices at a firing temperature of 1300 °C acid stops.
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Study of the effect of high-temperature annealing on the structure and properties of a composite material based on TiC/TiB2/Ti3SiC2 Formation of the structure of a ceramic composite of the Al2 O3 ‒ZrO2 system during the synthesis of strontium hexaaluminate during firing Experience and prospects of expanding the use of dry mixes in the manufacture of heat-resistant concretes Acid-resistant material was obtained on the basis of metallurgy waste without the use of traditional natural materials The influence of the glass phase of fused refractories on their operational and technological properties
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