Download 8th International Symposium on High-Temperature by Jiann-Yang Hwang, Tao Jiang, Mark William Kennedy, Onuralp PDF

By Jiann-Yang Hwang, Tao Jiang, Mark William Kennedy, Onuralp Yücel, P. Chris Pistorius, Varadarajan Seshadri, Baojun Zhao, Dean Gregurek, Ender Keskinkilic

This assortment gains contributions overlaying the advances and advancements of recent high-temperature metallurgical applied sciences and their functions to the parts of: processing of minerals; extraction of metals; education of steel, refractory, and ceramic fabrics; remedy and recycling of slag and wastes; conservation of power; and environmental safeguard. the quantity could have a huge effect at the lecturers and execs serving the metallurgical industries world wide by means of delivering them with accomplished assurance of a wide selection of topics.

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A picture of sample n°5 obtained using a backscattered electron detector is shown in Fig. 4. Further EDS analysis confirm that the bulk is a chromite spinel phase, but some impurities are also present. In sample n°5 and 8, a metallic Fe–Cr alloy phase and a FeO phase have been evidenced in addition to the spinel. In sample n°6, a (Cr, Al)2O3 phase was evidenced in addition to FeO and a Fe–Cr alloy. Fig. 4 Picture of a chromite sample (x = 0, y = 0) 18 V. Canaguier et al. Table 3 Metallic ratios from EDS measurements and targeted values for the (Fe1−xMgx) (Cr1−yAly)2O4 samples Ref.

1). The original brick thickness was 390 mm. The immediate brick hot face is covered with a thin slag coating. On the cross section, the macroscopically visible infiltration depth (pore infiltration—mainly slag, but also metal) reaches up to the brick cold face. In different distances from the hot face, cracks running parallel to the hot face can be observed, partly filled with metallic lead and slag. Chemical Analysis Generally, in lead recycling furnaces the low-melting, partly alkali-rich silicate slag is able to penetrate deeply into the brick microstructure [8].

Z. , Numerical simulation on novel blast furnace operation of combining coke oven gas injection with hot burden charging. Ironmaking Steelmaking 43(1), 64–73 (2016) 5. D. Wang, Technology innovation and development direction of iron and steel industry. Iron Steel 50(9), 1–10 (2015) 6. H. , Fundamental research on iron coke hot briquette—A new type burden used in blast furnace. Ironmaking Steelmaking 43(8), 571–580 (2016) 7. T. , Mathematical simulation on blast furnace operation of coke oven gas injection in combination with top gas recycling.

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