The present work represents an experimentally based investigation of the applicability of a statistical mechanical theory in conjunction with a compound formation model (CFM) to describe surface properties of Pb-Bi liquid alloys. The surface tension of molten Pb, Bi and Pb-Bi alloys has been measured by the sessile-drop method over the range of temperatures. The results obtained show general agreement with other reported measurements on pure elements and their alloys as well as with calculated surface tension values. Based on the phase diagram evidence about the existence of the ƒÕ-Pb3Bi intermetallic compound, the phenomenon of compound formation in Pb-Bi liquid alloys has been analysed through the study of surface properties (surface tension and surface composition) and microscopic functions (concentration fluctuations in the long-wavelength limit and chemical short-range order parameter) in the frame of compound formation model (CFM).

Surface properties of Bi-Pb liquid alloys

Novakovic R;Ricci E;Giuranno D;
2002

Abstract

The present work represents an experimentally based investigation of the applicability of a statistical mechanical theory in conjunction with a compound formation model (CFM) to describe surface properties of Pb-Bi liquid alloys. The surface tension of molten Pb, Bi and Pb-Bi alloys has been measured by the sessile-drop method over the range of temperatures. The results obtained show general agreement with other reported measurements on pure elements and their alloys as well as with calculated surface tension values. Based on the phase diagram evidence about the existence of the ƒÕ-Pb3Bi intermetallic compound, the phenomenon of compound formation in Pb-Bi liquid alloys has been analysed through the study of surface properties (surface tension and surface composition) and microscopic functions (concentration fluctuations in the long-wavelength limit and chemical short-range order parameter) in the frame of compound formation model (CFM).
2002
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Equilibrium thermody
Surface segregation
Alloys
Surface thermodynami
Surface tension
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/53001
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