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Production of MgO-X Refractory Material with Cellular Matrix by Colloidal Processing

机译:胶体加工法制备含细胞基质的MgO-X耐火材料

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摘要

The production in the siderurgy and foundry industry has changed considerably in the past years. Despite the new technologies and process, the use of magnesia carbon refractory remains constant. Namely the magnesia carbon refractory is widely used due low-priced cost, high refractivity, excellent corrosion resistance, thermal shock resistance, low thermal expansion, high slag penetration resistance and low wettability. The main disadvantages of use magnesia carbon refractories are the high carbon oxidation susceptibility and the formation CO and CO2 gases. As a result, tonne of CO and CO2 are expelled to the atmosphere. The use of open cell carbon-foam magnesia composite for refractory application can offer a substitute for the traditional refractory material since the high carbon content can be minored and the low mechanical strength and poor oxidation resistance of these materials can be improved.
机译:在过去的几年中,农副业和铸造业的生产发生了很大变化。尽管采用了新技术和新工艺,氧化镁耐火材料的使用仍保持不变。即,氧化镁碳质耐火材料由于价格低廉,折射率高,耐腐蚀性,耐热冲击性,低热膨胀性,高耐熔渣性和低润湿性而被广泛使用。使用氧化镁碳质耐火材料的主要缺点是碳的氧化敏感性高以及形成CO和CO2气体。结果,一吨CO和CO2被排放到大气中。开孔碳泡沫镁质复合材料在耐火材料中的使用可以替代传统的耐火材料,因为可以降低高碳含量,并且可以改善这些材料的低机械强度和较差的抗氧化性。

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