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首页> 外文期刊>Interceram: International Journal for Bricks, Structural Clay Products, Refractories, Pottery, Fine Ceramics, Abrasives and Special Ceramics >The Interfacial Behavior of Alumina- Magnesia Castables and Molten Slag under an Alternating Magnetic Field
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The Interfacial Behavior of Alumina- Magnesia Castables and Molten Slag under an Alternating Magnetic Field

机译:交替磁场下氧化铝 - 氧化镁浇筑物和熔渣的界面行为

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Electromagnetic metallurgical technology has become an important method for the smelting of high purity steel with the development of metallurgical technology. The electromagnetic fields existing extensively in the steelmaking process can not only affect the smelting efficiency and the cleanness of steel, but also the interfacial behavior between the refractory and the molten slag. Focusing on alumina-magnesia castables, an important lining material in ladles, the interfacial behavior between the castable and different ladle slags with or without an AMF is studied in this paper. The results showed that the slag corrosion and especially the slag penetration of the alumina-magnesia castable are more severe under an AMF. Moreover, an AMF accelerates the migration of Fe, Mn and their oxides from the molten slag to the castable. Meanwhile, some low melting point phases such as diopside and anorthite form in the corrosion layer of the castable, which was deduced to accelerate the slag corrosion and penetration of the alumina-magnesia castable.
机译:电磁冶金技术已成为冶金技术发展冶炼高纯度钢的重要方法。在炼钢过程中存在的电磁场不仅可以影响冶炼效率和钢的清洁,而且还影响耐火材料和熔渣之间的界面行为。专注于氧化铝 - 氧化镁浇注物,在本文中研究了钢材中的重要衬里材料,浇注件和不同的钢包渣之间的界面行为,本文研究了或没有AMF的不同钢绞线。结果表明,在AMF下氧化铝 - 氧化镁血液铸件的炉渣腐蚀和颗粒渗透更严重。此外,AMF加速了Fe,Mn及其氧化物的迁移到熔融渣中的迁移。同时,一些低熔点相,例如浇铸的腐蚀层中的硫孔和高钙矿形式,推导出来加速氧化铝 - 氧化镁浇注的炉渣腐蚀和渗透。

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