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{ "DOI": "10.5772/intechopen.84701", "abstract": "<p>Abstract<br>\nA brief review of measurement techniques and theoretical studies on the surface<br>\ntension alloy and mixture has been presented in the present study. It is clear that the<br>\nexperimental determination of thermodynamic and thermophysical properties of<br>\nboth solid and especially liquid alloys at high temperature cases is frequently difficult<br>\ntechnologically. In addition to this, a lack of experimental data concerning<br>\nthermophysical properties of Ag-Au, Au-Cu, and Ag-Cu sub-binary systems is<br>\nobvious. The theoretical thermophysical data of the Ag-Au-Cu ternary alloy systems<br>\nare very scarce in the literature. Thus, the surface tensions of the alloys just mentioned<br>\nabove for cross sections z = xAg/xAu = 1/3, 1/1, 3/1, 2/5, and 5/2, respectively,<br>\nand their sub-binary systems are much simply calculated from the surface tensions<br>\nof the Ag-Au, Au-Cu, and Ag-Cu sub-binary systems by using geometric models,<br>\nsuch as Muggianu, Kohler, Toop, and GSM (Chou’s general solution model) and<br>\nButler’s equation. The predicted results in the present study show rather an agreement<br>\nwith the experimental results of the alloys. Therefore, it is inferred that the<br>\nobtained surface tension curves for the Ag-Au-Cu ternary alloy at 1</p>", "author": [ { "family": "H\u00fcseyin ARSLAN" } ], "id": "263692", "issued": { "date-parts": [ [ 2019, 1, 1 ] ] }, "language": "eng", "title": "Surface Tension and Surface Tension Assessment of Ag-Au-Cu Ternary and Sub-Binary Alloy Systems", "type": "article-journal" }
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