Solid‐State Combustion in Mechanically Activated SHS Systems. I. Effect of Activation Time on Process Parameters and Combustion Product Composition
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N. Lyakhov | M. Sharafutdinov | M. Korchagin | T. F. Grigor’eva | A. P. Barinova | B. Bokhonov | A. Barinova
[1] N. Lyakhov,et al. A regime of the solid-state reaction in the self-propagating high-temperature synthesis , 2000 .
[2] A. Rogachev,et al. Macrokinetics of thermal explosion in a niobium—aluminum system. I. Basic macrokinetic stages , 2000 .
[3] E. Gaffet,et al. Synthesis of niobium aluminides using mechanically activated self-propagating high-temperature synthesis and mechanically activated annealing process , 1999 .
[4] B. Zeghmati,et al. Mechanically activated synthesis studied by X-ray diffraction in the Fe–Al system , 1999 .
[5] E. N. Boyangin,et al. Effect of aluminum content on thermograms of synthesis of intermetallide Ni3Al by thermal shock , 1998 .
[6] V. Itin,et al. Effect of mechanical activation on the regularities of self-propagating high-temperature synthesis in the titanium-nickel system , 1997 .
[7] M. Lai,et al. THERMODYNAMIC PROPERTIES OF MECHANICALLY ALLOYED NICKEL AND ALUMINUM POWDERS , 1994 .
[8] G. Blaise,et al. Studies of the first steps of thin film interdiffusion in the Al-Ni system , 1989 .
[9] V. E. Panin,et al. Structural levels of deformation in solids , 1982 .