By Jiann-Yang Hwang, Tao Jiang, Chris Pistorius, Gerardo Alvear, Onuralp Yucel, Liyuan Cai, Baojun Zhao, Dean Gregurek, Varadarajan Seshadri
The expertise, operation, power, environmental, research, and destiny improvement of the metallurgical industries using hot temperature tactics are coated within the e-book. The concepts at the extraction and construction of ferrous and nonferrous metals, alloys, and refractory and ceramic fabrics, the heating techniques and effort administration, and the remedy and utilizations of the wastes and by-products are the subjects of unique pursuits. This e-book makes a speciality of the next matters: •High potency New Metallurgical technique and know-how primary learn of Metallurgical approach •Alloys and fabrics coaching •Direct aid and Smelting relief •Coking, New strength and surroundings •Utilization of stable Slag/Wastes and intricate Ores •Characterization of hot temperature Metallurgical Process
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Additional resources for 7th International Symposium on High-Temperature Metallurgical Processing
In addition, the dissolutionelectrodeposition mechanism can also influence the microstructure of the products . SEM images and elemental maps of the final Mo-Si-C composites products are shown in Figure 5. It can be seen that that the morphology of the obtained Mo-Si-C composites products (Mo5Si3/MoSi2/Mo2C/SiC) is similar with that of the Mo-Si composites products (Figure 3). The particles exhibit smooth surfaces, and elements Mo, Si, and C distribute uniformly in the products. Compare to other conventional methods used to synthesize composites, the molten salt electroreduction process can produce composites with uniform elemental distribution.
1 V. A Biologic HCP-803 electrochemical workstation was used to control the experiment and record current-time curve. The schematic of the electrolytic cell and more experimental details can be found in our previous work . After experiment, the electroreduced products were washed with water and dried in air. 15406 nm). The microstructure of the products was characterized using a JEOL JSM-6700F scanning electron microscope (SEM), and the elemental composition was analyzed by energy-dispersive X-ray spectroscopy (EDS) attached to the SEM.
22) (2002), 791-796. 10. Q. , "Oxidation behavior of Mo≤5Si3C≤1 and its composites," J. Mater. , (35) (2000), 863-872. 11. N. P. Kobyakov, "Oxidation of SHS Mo-Si-C materials in air," Inorg. , (36) (2000), 337-342. 12. L. , "Direct electrosynthesis of Ti5Si3/TiC composites from their oxides/C precursors in molten calcium chloride," Electrochem. , (21) (2012), 9-13. 13. L. , "Electrochemical extraction of Ti5Si3 silicide from multicomponent Ti/Sicontaining metal oxide compounds in molten salt," J.