By Tao Jiang,Jiann-Yang Hwang,Mark E. Schlesinger, et al.John Wiley & Sons, Inc.|Wiley||Wiley-TMSAdult NonfictionScience, TechnologyLanguage(s): EnglishOn sale date: 07.02.2014Street date: 10.01.2014Preview

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4. R. Sadoway, “The Electrochemical Processing of Refractory Metals”, Journal of the Minerals Metals and Materials Society 43-7 (1991), 15-19. 5. H. Okabe, M. Nakamura, T. Oishi and K. Ono, “Electrochemical Deoxidation of Titanium”, Metallurgical Transactions B, 24-3 (1993), 449-455. 6. K. Ono and R. Suzuki, “A new Concept for Producing Ti Sponge: Calciothermic Reduction “, Journal of the Minerals Metals and Materials Society 52-2 (2002), 59-61. 7. O. Suzuki and H. Kitagawa, “Direct Synthesis of TiCr2 Powder by Calciothermic Co-reduction of Their Oxides in Molten CaCl2”, Electrochemistry 73-8, (2005), 724-729.

The fitted Raman spectrum under H2/H2O gas atmosphere at 1550ࣙC. Table III. Peak parameters of the peaks of Raman spectra under H2/H2O at 1550ࣙC. 1 0 Q Stretching of Al–O–M Q1 Stretching of Al–O–M Q2 Asymmetric stretching of Si–O–M 16 Based on Raman analysis, the order of the atmospheres with respect to the sum of the area % of the most depolymerized species (Q0+Q1) is CO/CO2 (77%) > H2/H2O (41%) > CO/CO2/H2/H2O (38%). This confirms the fact that the silicate melts show more dissociation under a CO/CO2 gas mixture than under the two other atmospheres.

R. Sadoway, “The Electrochemical Processing of Refractory Metals”, Journal of the Minerals Metals and Materials Society 43-7 (1991), 15-19. 5. H. Okabe, M. Nakamura, T. Oishi and K. Ono, “Electrochemical Deoxidation of Titanium”, Metallurgical Transactions B, 24-3 (1993), 449-455. 6. K. Ono and R. Suzuki, “A new Concept for Producing Ti Sponge: Calciothermic Reduction “, Journal of the Minerals Metals and Materials Society 52-2 (2002), 59-61. 7. O. Suzuki and H. Kitagawa, “Direct Synthesis of TiCr2 Powder by Calciothermic Co-reduction of Their Oxides in Molten CaCl2”, Electrochemistry 73-8, (2005), 724-729.

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