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N. Tzenov, M. Barsoum (2004)
Synthesis and Characterization of Ti3AlC2Journal of the American Ceramic Society, 83
Aiguo Zhou, Chang-An Wang, Yong Huang (2003)
A possible mechanism on synthesis of Ti3AlC2Materials Science and Engineering A-structural Materials Properties Microstructure and Processing, 352
V. Podlesov, A. Stolin, A. Merzhanov (1992)
SHS extrusion of electrode materials and their application for electric-spark alloying of steel surfacesJournal of Engineering Physics and Thermophysics, 63
ISSN 00125008, Doklady Chemistry, 2011, Vol. 439, Part 2, pp. 237–239. © Pleiades Publishing, Ltd., 2011. Original Russian Text © P.M. Bazhin, A.M. Stolin, 2011, published in Doklady Akademii Nauk, 2011, Vol. 439, No. 5, pp. 630–633. CHEMICAL TECHNOLOGY SHS Extrusion of Materials Based on the Ti–Al–C MAX Phase P. M. Bazhin and A. M. Stolin Presented by Academician A.G. Merzhanov February 10, 2011 Received May 3, 2011 DOI: 10.1134/S0012500811080052 MAX phases are of great practical interest for the EXPERIMENTAL last decade. A MAX phase is an M AX ternary sys n+1 n The initial sample was a cylinder 28 mm in diam tem with hexagonal close packing, where M is a tran eter and 30 mm in height with a relative density of sition metal, A is a subgroup A element, and X is car 65%. The sample was compacted from a mixture of bon or nitrogen. These materials are intermediate in PTM titanium, ASD4 aluminum, and carbon their properties between metals and ceramics [1, 2]. black powders. The composition of the initial mix The main method for producing such materials is sin ture—73% Ti + 15% Al + 12% C—was calculated tering [3], which consumes much time
Doklady Chemistry – Springer Journals
Published: Sep 4, 2011
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