By Jiann-Yang Hwang, Tao Jiang, Chris Pistorius, Gerardo Alvear, Onuralp Yucel, Liyuan Cai, Baojun Zhao, Dean Gregurek, Varadarajan Seshadri
The expertise, operation, strength, environmental, research, and destiny improvement of the metallurgical industries using extreme temperature techniques are coated within the ebook. The strategies at the extraction and creation of ferrous and nonferrous metals, alloys, and refractory and ceramic fabrics, the heating ways and effort administration, and the therapy and utilizations of the wastes and by-products are the subjects of specific pursuits. This booklet specializes in the next matters: •High potency New Metallurgical procedure and know-how primary study of Metallurgical technique •Alloys and fabrics education •Direct aid and Smelting relief •Coking, New strength and setting •Utilization of good Slag/Wastes and intricate Ores •Characterization of hot temperature Metallurgical Process
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Extra info for 7th International Symposium on High-Temperature Metallurgical Processing
Complete reduction was achieved at temperatures as low as 1200 ºC and 3 s particles residence time (these results are not shown here). 36 Figure 1. Schematic diagram for the drop tube reactor (DTR). The results of the experiments were compared to the results obtained using only hydrogen as a reductant under otherwise similar conditions. 2 atm for each gas. Using only pure CO gas as the reductant, the maximum reduction degree achieved was 60% at 1350 oC within 6 s of reaction time. This implies the low contribution of CO to magnetite reduction.
Ironmaking and Steelmaking, 39 (2012), 398-408. 13. H. Pinegar, M. Moats, and H. " Ironmaking and Steelmaking, 40 (2012), 44-49. 41 7th International Symposium on High-Temperature Metallurgical Processing Edited by: Jiann-Yang Hwang, Tao Jiang, P. F.
26(2) (2010), 106-112. 2. J. , "Microstructure of Ti5Si3-TiC-Ti3SiC2 and Ti5Si3-TiC nanocomposites in situ synthesized by spark plasma sintering," J. Mater. , (19) (2004), 3004-3008. 3. F. , "A MoSi2/SiC oxidation protective coating for carbon/carbon composites," Corros. , (53) (2011), 834-839. 4. G. Xu, F. Chen, and F. Tan, "In-situ preparation of SiC-MoSi2 composite by microwave reaction sintering," Ceram. , (38) (2012), 6895-6898. 5. D. Hu, P. W. Yan, "Microstructures and densification of MoSi2-SiC composites by field-activated and pressure-assisted combustion synthesis," J.
7th International Symposium on High-Temperature Metallurgical Processing by Jiann-Yang Hwang, Tao Jiang, Chris Pistorius, Gerardo Alvear, Onuralp Yucel, Liyuan Cai, Baojun Zhao, Dean Gregurek, Varadarajan Seshadri