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Materials Properties and Liquid Flow in the Hearth of the Experimental Blast Furnace

机译:实验高炉炉膛材料性能和液体流动

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摘要

The materials’ properties in the hearth of the blast furnace are very crucial for the hearth conditions. In this study, a number of coke, slag, metal, and aggregate samples were collected from the hearth of the LKAB’s experimental blast furnace (EBF). Subsequently, the coke, slag, and metal samples were chemically analyzed by X-ray fluorescence (XRF) or optical emission spectrometer (OES); the aggregate samples were analyzed by scanning electron microscope combined with energy-dispersive X-ray spectroscopy (SEM/EDS). The possible flow field of the liquid in the EBF hearth before quenching is depicted according to Cu tracers in the metal samples. Selected elements in the coke, slag, and metal were mapped for two sampling layers in the hearth, as well as in one cross section of the flow field. The results indicate that there exists an area beneath, and in front of, tuyere 3, where the flow resistance of the liquid was high. The high flow resistance contributed to the formation of a cold zone in the close-to-wall region and at the bottom of the EBF hearth. The temperature distribution in the EBF hearth has significant impacts on the chemical properties of the materials in different positions of the EBF hearth, as well as on the radial and vertical distributions of certain elements/components.
机译:高炉炉膛的材料在炉膛条件非常重要。在该研究中,从龙巴布的实验高炉(EBF)的壁炉中收集了许多焦炭,炉渣,金属和聚集样品。随后,通过X射线荧光(XRF)或光发射光谱仪(OES)化学分析焦炭,渣和金属样品;通过将电子显微镜与能量分散X射线光谱(SEM / ED)组合来分析聚集样品。根据金属样品中的Cu示踪剂,描绘了在淬火前的EBF壁炉中的液体中的可能流场。焦炭,炉渣和金属中的选定元素被映射到炉膛中的两个采样层,以及流场的一个横截面。结果表明,在风口3下方存在一个区域,其中液体的流动性高。高流动阻力有助于在靠近壁区域和EBF壁的底部形成冷区。 EBF壁炉中的温度分布对EBF炉膛不同位置的材料的化学性质以及某些元素/组件的径向和垂直分布产生了显着影响。

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