Pyrometallurgical Principles Involved In The Combustion Synthesis Of Advanced Materials (f72a5417-8236-436d-ae7c-d3ce8a44e98b)

Society for Mining, Metallurgy & Exploration
J. J. Moore
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
11
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988 KB
Publication Date:
Jan 1, 1991

Abstract

Combustion synthesis or self propagating high temperature synthesis (SHS) reaction systems are discussed with respect to thermodynamics and kinetics. In particular, tile effect of the process parameters, ego particle size, AHf, ignition and combustion temperatures on these self sustaining reactions is discussed. Combustion theory is used to investigate the effect of the overall activation energy of the SHS reaction on the combustion front propagation rate and in obtaining a clearer understanding of the transition from stable to unstable propagation. Finally, examples of the application of combustion synthesis to advanced materials processes are made, in particular the synthesis of Ni-Ti -X intermetallic shape memory alloys, TiC-Al2O3 and ZrB2 ?Al2O3 ceramic composite materials.
Citation

APA: J. J. Moore  (1991)  Pyrometallurgical Principles Involved In The Combustion Synthesis Of Advanced Materials (f72a5417-8236-436d-ae7c-d3ce8a44e98b)

MLA: J. J. Moore Pyrometallurgical Principles Involved In The Combustion Synthesis Of Advanced Materials (f72a5417-8236-436d-ae7c-d3ce8a44e98b). Society for Mining, Metallurgy & Exploration, 1991.

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