학술논문

Effect of Ga on the Oxide Film Structure and Oxidation Resistance of Sn–Bi–Zn Alloys as Heat Transfer Fluids.
Document Type
Article
Source
Materials (1996-1944). Dec2020, Vol. 13 Issue 23, p5461-5461. 1p.
Subject
*HEAT transfer fluids
*OXIDE coating
*GALLIUM alloys
*LIQUID alloys
*LIQUID metals
*X-ray photoelectron spectroscopy
Language
ISSN
1996-1944
Abstract
The effect of gallium on the oxide film structure and overall oxidation resistance of low melting point Sn–Bi–Zn alloys was investigated under air atmosphere using thermogravimetric analyses. The liquid alloys studied had a Ga content of 1–7 wt.%. The results showed that the growth rates of the surface scale formed on the Sn–Bi–Zn–Ga alloys conformed to the parabolic law. The oxidation resistance of Sn–Bi–Zn alloys was improved by Ga addition and the activation energies increased from 12.05 kJ∙mol−1 to 22.20 kJ∙mol−1. The structure and elemental distribution of the oxide film surface and cross-section were found to become more complicated and denser with Ga addition. Further, the results of X-ray photoelectron spectroscopy and X-ray diffraction show that Ga elements accumulate on the surface of the liquid metal to form oxides, which significantly slowed the oxidation of the surface of the liquid alloy. [ABSTRACT FROM AUTHOR]