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Title | Structural Evolution and Phase Transformation in Nanoquasicrystalline Al-Fe-Cr Alloy: DSC Analysis |
Authors |
Byakova, A.V.
Cherednichenko, V.V. Scheretskiy, A.A. Vlasov, A.A. Yurkova, A.I. |
ORCID | |
Keywords |
Nanoquasicrystals Al-Fe-Cr Based Alloy Structural Evolution Phase Transformation |
Type | Conference Papers |
Date of Issue | 2012 |
URI | http://essuir.sumdu.edu.ua/handle/123456789/34854 |
Publisher | Sumy State University |
License | Copyright not evaluated |
Citation | Structural Evolution and Phase Transformation in Nanoquasicrystalline Al-Fe-Cr Alloy: DSC Analysis [Текст] / A.V. Byakova, V.V. Cherednichenko, A.A. Scheretskiy et al. // Nanomaterials: Applications & Properties (NAP-2012) : 2-nd International conference, Alushta, the Crimea, September 17-22, 2012 / Edited by: A. Pogrebnjak. - Sumy : Sumy State University, 2012. - V.1, No1. - 01PCN19 |
Abstract |
Kinetic parameters for microstructural evolution and phase transformation in water atomized Al-Fe-Cr
based alloy with nominal composition Al94Fe3Cr3 have been examined by means of developed precise method
of DSC technique and confirmed by the results of XRD analysis. Two exothermic reactions including that
with a maximum at 380 – 400 degrees Celsius has been ascribed to dislocation reorganisation and recrystallisation process within the Al matrix although the main exothermic reaction with a maximum around 540 degrees Celsius arose
from decomposition of icosahedral quasicrystalline particles and simultaneous formation of the metastable
Al6Fe phase and more stable crystalline particles compositionally corresponded to the O-Al13Cr2 and
O-Al13Fe4 phases. Activation energy for the main exothermic reaction has been found to be roughly
about 53.1 kJ mol-1 which is significantly smaller than that for the bulk diffusion of either iron or chromium atoms in aluminium and very close to that for the vacancy migration.
When you are citing the document, use the following link http://essuir.sumdu.edu.ua/handle/123456789/34854 |
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