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Cr7C3: A potential antioxidant for low carbon MgO-C refractories

机译:CR7C3:低碳MgO-C耐火材料的潜在抗氧化剂

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摘要

Magnesia carbon (MgO-C) refractory, one of the most commonly used refractories in the steelmaking system, relies on graphite to improve the thermal shock resistance and slag corrosion resistance. The oxidation of graphite carbon in a MgO-C brick usually leads to the destruction of the carbon network in the brick, which causes the structure of the brick to become loose and easily eroded. At present, metal powders, carbides, and borides are used as antioxidants to prevent the oxidation of carbon in MgO-C bricks. The metal carbide Cr7C3 can be prepared from aluminum chromium slag through a simple synthetic process and at a low cost. In this work, we investigated the oxidation resistance of low carbon MgO-C refractories with different amounts of Cr7C3 powder (1, 2, 3, and 4 wt%). The refractories with 3 wt% Cr7C3 powder showed optimal resistance to oxidation. The microstructure indicated that oxygen reacts with Cr7C3 preferentially over carbon to form chromium oxide and magnesium chromium spinel, blocking the pores and hindering oxygen diffusion. Carbon arising from the reduction of carbon monoxide by Cr7C3 can act as a supplementary carbon source. The better oxidation resistance also contributed to the improvements in slag corrosion and thermal shock resistance of the refractories.
机译:Magnesia Carbon(MgO-C)耐火材料,炼钢系统中最常用的耐火材料之一,依靠石墨来提高耐热防震和矿渣耐腐蚀性。 MgO-C砖中石墨碳的氧化通常导致砖中的碳网络的破坏,从而导致砖的结构松动,易于侵蚀。目前,金属粉末,碳化物和硼化物用作抗氧化剂,以防止MgO-C砖中的碳氧化。金属碳化物CR7C3可以通过简单的合成工艺和低成本从铝铬制成。在这项工作中,我们研究了不同量的CR7C3粉末(1,2,3和4wt%)的低碳MgO-C耐火材料的抗氧化性。具有3wt%CR7C3粉末的耐火材料显示出对氧化的最佳抗性。微观结构表明氧与CR7C3优先通过碳反应以形成氧化铬和铬尖晶石,阻挡孔并阻碍氧气扩散。通过CR7C3减少一氧化碳而产生的碳可作为补充碳源。更好的氧化抗性也有助于改善耐火材料的熔渣腐蚀和热抗冲击性。

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