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Effect of Al dopant on the hydrothermal oxidation behavior of Ti(3)SiC(2) powders
H. B. Zhang; X. Wang; C. Berthold; K. G. Nickel; Y. C. Zhou
2009
发表期刊Journal of the European Ceramic Society
ISSN0955-2219
卷号29期号:10页码:2097-2103
摘要Experimental and thermodynamic studies of the hydrothermal oxidation behavior of Ti(3)Si(0.9)Al(0.1)C(2) powders were performed at 500-700 degrees C under a hydrostatic pressure of 50 MPa. Titanium, silicon and aluminum were selectively extracted from Ti(3)Si(0.9)Al(0.1)C(2) during hydrothermal oxidation, resulting in the formation of oxides and disordered carbon. A comparative investigation with Ti(3)SiC(2) disclosed the evident influence of Al dopant on the hydrothermal oxidation process, i.e. delaying the phase transformation from anatase to rutile, promoting the formation of carbon, the crystallization of silica and decomposition of Ti(3)Si(0.9)Al(0.1)C(2). The corresponding mechanism was discussed. (C) 2008 Elsevier Ltd. All rights reserved.
部门归属[zhang, h. b.; wang, x.; berthold, c.; nickel, k. g.] univ tubingen, inst geosci, d-72074 tubingen, germany. [zhou, y. c.] chinese acad sci, shenyang natl lab mat sci, inst met res, shenyang 110016, peoples r china.;nickel, kg (reprint author), univ tubingen, inst geosci, wilhelmstr 56, d-72074 tubingen, germany;klaus.nickel@uni-tuebingen.de
关键词Carbides Hydrothermal Oxidation Ti3si0.9al0.1c2 Solid-solution High-temperature Phase-transformation Thermal-stability Titania Powders Silicon-nitride Bulk Ceramics Carbon Air Composites
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文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/32538
专题中国科学院金属研究所
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H. B. Zhang,X. Wang,C. Berthold,et al. Effect of Al dopant on the hydrothermal oxidation behavior of Ti(3)SiC(2) powders[J]. Journal of the European Ceramic Society,2009,29(10):2097-2103.
APA H. B. Zhang,X. Wang,C. Berthold,K. G. Nickel,&Y. C. Zhou.(2009).Effect of Al dopant on the hydrothermal oxidation behavior of Ti(3)SiC(2) powders.Journal of the European Ceramic Society,29(10),2097-2103.
MLA H. B. Zhang,et al."Effect of Al dopant on the hydrothermal oxidation behavior of Ti(3)SiC(2) powders".Journal of the European Ceramic Society 29.10(2009):2097-2103.
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