Temperature-dependent texture, stress and resistivity in melt spun Cu0.95Co0.05 ribbon

Ribbon samples of Cu0.95Co0.05 were prepared by melt spinning method to perform systematic investigations on structure and transport properties as a function of annealing temperature. X-ray diffraction study shows that the ribbon is polycrystalline with a strong < 2 0 0 > texture along the sur...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2008-06, Vol.403 (12), p.2059-2064
Hauptverfasser: MAJUMDAR, S, SINGHA, R. K, DAS, K, CHAKRABORTY, M, DAS, A. K, RAY, S. K
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Sprache:eng
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Zusammenfassung:Ribbon samples of Cu0.95Co0.05 were prepared by melt spinning method to perform systematic investigations on structure and transport properties as a function of annealing temperature. X-ray diffraction study shows that the ribbon is polycrystalline with a strong < 2 0 0 > texture along the surface normal of the as-quenched Cu0.95Co0.05 ribbon and the degree of texture is enhanced upon annealing. The compressive stress, which relaxes upon annealing, is observed in as-quenched ribbon. The resistivity, which is higher in as-quenched ribbon, decreases toward the bulk value of Cu upon annealing. The compressive stress and higher resistivity in as-quenched ribbon are attributed to the incorporation of Co atoms/particles in Cu matrix. The decrement of the stress and resistivity upon annealing is due to the precipitation of Co atoms from the Cu matrix, segregating as Co or Co-rich Cu grains as observed from the transmission electron microscopy measurements.
ISSN:0921-4526
1873-2135
DOI:10.1016/j.physb.2007.11.030