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Layered Machinable and Electrically Conductive Ti(2)AlC and Ti(3)AlC(2) Ceramics: a Review
X. H. Wang; Y. C. Zhou
2010
发表期刊Journal of Materials Science & Technology
ISSN1005-0302
卷号26期号:5页码:385-416
摘要Ti(2)AlC and Ti(3)AlC(2) are the most light-weight and oxidation resistant layered ternary carbides belonging to the MAX phases. This review highlights recent achievements on the processing, microstructure, physical, mechanical and chemical properties of these two machinable and electrically conductive carbides. Ti(2)AlC and Ti(3)AlC(2) display superior properties such as fracture toughness, electrical and thermal conductivities, and oxidation resistance over their binary counterpart. This paper provides a comprehensive overview of the processing-microstructure-property correlations of these two carbides. Potential fields of applications for Ti(2)AlC and Ti(3)AlC(2) are surveyed. In addition, we point out methods for further improving their properties in some specific applications through appropriate structural design and modification.
部门归属[wang, x. h.; zhou, y. c.] chinese acad sci, shenyang natl lab mat sci, inst met res, shenyang 110016, peoples r china.;zhou, yc (reprint author), chinese acad sci, shenyang natl lab mat sci, inst met res, shenyang 110016, peoples r china;yczhou@imr.ac.cn
关键词Max Phases Ti(2)Alc Ti(3)Alc(2) Machinable Ceramics Temperature Oxidation Behavior Liquid Reaction Synthesis Ternary Carbide Ti3alc2 Single-phase Ti3alc2 Al-c System Titanium Aluminum Carbide Thermal-shock Behavior High-purity Ti3sic2 X-ray-diffraction In-situ Synthesis
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文献类型期刊论文
条目标识符http://ir.imr.ac.cn/handle/321006/31525
专题中国科学院金属研究所
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X. H. Wang,Y. C. Zhou. Layered Machinable and Electrically Conductive Ti(2)AlC and Ti(3)AlC(2) Ceramics: a Review[J]. Journal of Materials Science & Technology,2010,26(5):385-416.
APA X. H. Wang,&Y. C. Zhou.(2010).Layered Machinable and Electrically Conductive Ti(2)AlC and Ti(3)AlC(2) Ceramics: a Review.Journal of Materials Science & Technology,26(5),385-416.
MLA X. H. Wang,et al."Layered Machinable and Electrically Conductive Ti(2)AlC and Ti(3)AlC(2) Ceramics: a Review".Journal of Materials Science & Technology 26.5(2010):385-416.
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