Titel
Viscosity and Electrical Conductivity of the Liquid Sn-3.8Ag-0.7Cu Alloy with Minor Co Admixtures
Autor*in
V. Sklyarchuk
Department of Metal Physics, Ivan Franko National University, Ukraine
Autor*in
Yu. Plevachuk
Department of Metal Physics, Ivan Franko National University, Ukraine
... show all
Abstract
The viscosity and electrical conductivity as structure-sensitive transport properties of the liquid metals and alloys are important for modeling of the melting and solidification processes. The viscosity and electrical conductivity data provide additional information about the influence of impurities on the structure and physicochemical properties of the liquid metal matrix, which is useful for understanding of structural transformations in the liquid state. In the present work, an impact of minor Co admixtures on the viscosity and electrical conductivity of liquid Sn-3.8Ag-0.7Cu alloy was studied. An increase in viscosity with minor Co admixtures is in a satisfactory agreement with model predicted data obtained from thermodynamic approaches and suggests a significant impact of interatomic interactions. Cobalt admixtures significantly affect the electrical conductivity, which gradually decreases with increasing the amount of Co. Additionally, the sample microstructure has been examined using x-ray diffraction and scanning electron microscopy analyses. The formation of Sn-based Co-Sn intermetallic compounds was detected in the alloys with more than 1 wt.% Co.
Stichwort
Co admixtureselectrical conductivityelectronintermetallicjoiningmicroscopyviscosity
Objekt-Typ
Sprache
Englisch [eng]
Persistent identifier
https://phaidra.univie.ac.at/o:475256
Erschienen in
Titel
Journal of Materials Engineering and Performance
Band
25
Ausgabe
10
Seitenanfang
4437
Seitenende
4443
Verlag
Springer Nature
Erscheinungsdatum
2016
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