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Articles

TiAl–SiC composites prepared by high temperature synthesis

Pages 187-191 | Published online: 18 Jul 2013

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J. B. Yang, K. W. Teoh & W. S. Hwang. (1997) Preparation of (γ + α2) type TiAI intermetallics from elemental powders by solid state hot pressing. Materials Science and Technology 13:8, pages 695-701.
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DavidC. Dunand. (1995) Reactive Synthesis of Aluminide Intermetallics. Materials and Manufacturing Processes 10:3, pages 373-403.
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Amlan Kar, Kuldeep Singh & Lailesh Kumar. (2023) Effect of Tool Rotational Speed and Mechanisms Associated with Microstructure Evolution and Intermetallics Formation in Friction Stir Welding of Aluminum Alloy to Titanium Alloy. Journal of Materials Engineering and Performance.
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N. Grittner, B. Striewe, A. von Hehl, D. Bormann, M. Hunkel, H.W. Zoch & F.W. Bach. (2011) Co-Extrusion of Aluminium-Titanium-Compounds. Key Engineering Materials 491, pages 67-74.
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Jin-cheng PANG, Guo-hua FAN, Ai-bin LI & Lin GENG. (2011) Microstructure evolution of SiCp/Al-Ti foils during hot rolling and reaction annealing. Transactions of Nonferrous Metals Society of China 21, pages s304-s307.
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Z. Li & W. Gao. 2008. Developments in High Temperature Corrosion and Protection of Materials. Developments in High Temperature Corrosion and Protection of Materials 365 397 .
Li Qing Chen, Ji Jie Wang & Lin Chen. (2007) Preparation of Ti-Al Intermetallics by Aluminum Melt Infiltration-Diffusion Annealing Technique. Materials Science Forum 561-565, pages 367-370.
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Zhi Guang Liu, E. Bacarra, Brian Gabbitas & De Liang Zhang. (2004) Production of Ti-6Al-4V Based Nanocomposites and their Characterization. Journal of Metastable and Nanocrystalline Materials 20-21, pages 376-381.
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Janakarajan Ramkumar, Atsushi Kakitsuji, S.K. Malhotra, R. Krishnamurthy, H. Mabuchi, H. Tsuda, T. Matsui & Kenji Morii. (2019) Mechanical and Erosion Behaviour of Ti47Al-3W/TI 2 ALC Composites by Reactive Arc-Melting . Advanced Composites Letters 12:4, pages 096369350301200.
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Janakarajan Ramkumar, Santa Kumar Malhotra, Ramalingam Krishnamurthy, Hiroshi Mabuchi, Kei Demizu, Atsushi Kakitsuji, Hiroshi Tsuda, Toshiyuki Matsui & Kenji Morii. (2003) Microstructure and Dry Sliding Wear of Ti-50Al Alloy and Ti-47Al-3W/Ti<SUB>2</SUB>AlC Composite Produced by Reactive Arc-Melting. MATERIALS TRANSACTIONS 44:9, pages 1861-1865.
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Jinkeun Oh, W. C. Lee, Sung Gyu Pyo, Woojin Park, Sunghak Lee & Nack J. Kim. (2002) Microstructural analysis of multilayered titanium aluminide sheets fabricated by hot rolling and heat treatment. Metallurgical and Materials Transactions A 33:12, pages 3649-3659.
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Z.Y Ma, R.S Mishra & S.C Tjong. (2002) High-temperature creep behavior of TiC particulate reinforced Ti–6Al–4V alloy composite. Acta Materialia 50:17, pages 4293-4302.
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Atsushi Kakitsuji, Janakarajan Ramkumar, Jun Kinose, Hiroshi Mabuchi, Hiroshi Tsuda & Kenji Morii. (2002) Synthesis of TiAl(Cr)/Ti<SUB>2</SUB>AlC Composites by Reactive Arc-Melting. MATERIALS TRANSACTIONS 43:10, pages 2589-2592.
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S Djanarthany, J.-C Viala & J Bouix. (2001) An overview of monolithic titanium aluminides based on Ti3Al and TiAl. Materials Chemistry and Physics 72:3, pages 301-319.
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Z. Y. Ma, S. C. Tjong & S. X. Li. (2001) Creep behavior of TiBw/Ti In-situ composite fabricated by reactive hot pressing. Metallurgical and Materials Transactions A 32:4, pages 1019-1022.
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Atsushi Kakitsuji, Hiroki Miyamoto, Hiroshi Mabuchi, Hiroshi Tsuda & Kenji Morii. (2001) Microstructure and Mechanical Properties of TiAl/Ti<SUB>2</SUB>AlN Composites Prepared by Combustion Synthesis. MATERIALS TRANSACTIONS 42:9, pages 1897-1900.
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Janakarajan Ramkumar, Santa Kumar Malhotra, Ramalingam Krishnamurthy, Hiroshi Mabuchi, Kei Demizu, Atsushi Kakitsuji, Hiroshi Tsuda, Toshiyuki Matsui & Kenji Morii. (2001) Microstructure and Dry Sliding Wear of Ti-50Al Alloy and Ti-47Al-3W/Ti<SUB>2</SUB>AlC Composite Produced by Reactive Arc-Melting. MATERIALS TRANSACTIONS 42:9, pages 1861-1865.
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Atsushi Kakitsuji, Hiroki Miyamoto, Hiroshi Mabuchi, Hiroshi Tsuda & Kenji Morii. (1999) Synthesis of TiAl&ndash;(TiB<SUB>2</SUB>+Ti<SUB>2</SUB>AlN) Composites by HIP Reactive Sintering. Materials Transactions, JIM 40:9, pages 942-945.
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J. B. Yang, K. W. Teoh & W. S. Hwang. (1997) Preparation of (γ + α<SUB>2</SUB>) type TiAI intermetallics from elemental powders by solid state hot pressing. Materials Science and Technology 13:8, pages 695-701.
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M. Sujata, S. Bhargava & S. Sangal. (1997) On the formation of TiAl3 during reaction between solid Ti and liquid Al. Journal of Materials Science Letters 16:14, pages 1175-1178.
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W. Y. Yang & G. C. Weatherly. (1996) A study of combustion synthesis of Ti-Al intermetallic compounds. Journal of Materials Science 31:14, pages 3707-3713.
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J. A. Hawk & D. E. Alman. (2011) Wear Behavior of SHS Intermetallic Matrix Composites. MRS Proceedings 350.
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J. A. Hawk, A. V. Petty, C. P. Dogan & J. C. Rawers. (2011) Self-Propagating, High Temperature Synthesis As A Technique To Join Metals. MRS Proceedings 314.
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H. E. Maupin & J. C. Rawers. (1993) TiAl composites formed from elemental powders by hot-isostatic pressing processing. Journal of Materials Science Letters 12:3, pages 165-167.
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D. Z. Wang, Z. R. Liu, C. K. Yao & M. Yao. (1993) A novel technique for fabricatingin situ Al2O8/Ti x Al y composites. Journal of Materials Science Letters 12:18, pages 1420-1421.
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H. Mabuchi, H. Tsuda, Y. Nakayama & E. Sukedai. (2011) Processing of TiAl–Ti 2 AlN composites and their compressive properties . Journal of Materials Research 7:4, pages 894-900.
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