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Preparation of Ceramic-Bonded Carbon Block for Blast Furnace

机译:高炉用陶瓷结合碳块的制备

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摘要

Traditional carbon blocks for blast furnaces are mainly produced with electrically calcined anthracite owing to its good hot metal corrosion resistance. However, this kind of material shows low thermal conductivity and does not meet the demands for cooling of the hearth and the bottom of blast furnaces. In this article, a new kind of a high-performance carbon block has been prepared via ceramic-bonded carbon (CBC) technology in a coke bed at 1673 K (1400 °C) using artificial graphite aggregate, alumina, metallic aluminum, and silicon powders as starting materials. The results showed that artificial graphite aggregates were strongly bonded by the three-dimensional network of ceramic phases in carbon blocks. In this case, the good resistance of the CBC blocks against erosion/corrosion by the hot metal is provided by the ceramic matrix and the high thermal conductivity by the graphite aggregates. The microstructure of this carbon block resembles that of CBC composites with a mean pore size of less than 0.1 μm, and up to 90 pct of the porosity shows a pore size <1 /μm. Its thermal conductivity is higher than 30 W·m~(-1) ·K~(-1) [293 K (20 °C)]. Meanwhile, its hot metal corrosion resistance is better than that of traditional carbon blocks.
机译:传统的高炉碳块由于其良好的铁水抗腐蚀性而主要用电煅无烟煤生产。然而,这种材料显示出低的热导率并且不能满足炉底和高炉炉底的冷却要求。在本文中,通过陶瓷结合碳(CBC)技术在1673 K(1400°C)的焦炭床中使用人造石墨骨料,氧化铝,金属铝和硅制备了一种新型的高性能碳块粉末作为原料。结果表明,人造石墨聚集体通过碳块中陶瓷相的三维网络牢固地结合在一起。在这种情况下,陶瓷基体提供了CBC块对铁水的侵蚀/腐蚀的良好抵抗力,而石墨聚集体则提供了高导热率。该碳块的微观结构类似于CBC复合材料,其平均孔径小于0.1μm,并且高达90 pct的孔隙度显示孔径<1 /μm。其导热率高于30 W·m〜(-1)·K〜(-1)[293 K(20°C)]。同时,它的铁水腐蚀性能优于传统的碳块。

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