Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
8004685 | Journal of Magnesium and Alloys | 2017 | 7 Pages |
Abstract
Phase equilibria of the Mg-Sn-Ag system in Mg-rich corner at 320 and 400â°C were experimentally investigated with nine ternary alloys subjected to electron probe microanalysis and X-ray diffraction techniques. No ternary compounds were observed at both isothermal sections. Two three-phase triangles, i.e. hcp (Mg)â+âMg2Snâ+âMg3Ag and Mg2Snâ+âMg3Agâ+âMgAg (bcc_B2), were both observed at 320 and 400â°C. A new three-phase region of Ag3Snâ+âMg2Snâ+âMgAg (bcc_B2) was additionally observed at 320â°C, which implied that the binary phase Ag3Sn has a considerable solubility of Mg in the ternary system at the temperature. And the maximal solubility of Mg in Ag3Sn was measured to be 27.2 at.%. This result is not consistent with the thermodynamic calculated isothermal section at 350â°C from Wang et al. [11] and put forward a new requirement or refinement for the optimization of the Mg-Sn-Ag ternary system. At 400â°C, the maximal solubility of Sn in the Mg3Ag phase was determined to be about 3.0 at.% Sn, and the solubility of Ag in Mg2Sn was negligible. The temperature of ternary eutectic reaction at Mg-rich corner (Lâhcp (Mg)â+âMg54Ag17â+âMg2Sn) was measured by differential scanning calorimetry. The partial isothermal sections in Mg-rich corner of the ternary system at 320 and 400â°C were then constructed based on the above experimental data.
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Tingting Tong, Fan Zhang, Shuhong Liu, Yong Du, Kun Li,