Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
1622369 | Journal of Alloys and Compounds | 2009 | 7 Pages |
Abstract
The phase equilibria in the Ti-Ti5Si3-Dy5Si3-Dy part of the Ti-Dy-Si system were studied by DTA, X-ray diffraction, metallography and EPMA. The melting diagram, isopleths at 5Si, 65Ti and 65Dy, and a reaction scheme were constructed. The solidus surface is characterized by the following three-phase fields: ãβ-Tiã + ãTi5Si3ã + ãTiDySiã, ãβ-Tiã + ãTiDySiã + ãα-Dyã, ãTiDySiã + ãα-Dyã + ãDy5Si3ã, and ãTi5Si3ã + ãTiDySiã + ãDy5Si3ã. The first two fields form via U-type equilibria, L + ãTi5Si3ã â ãβ-Tiã + ãTiDySiã and L + ãβ-Tiã â ãTiDySiã + ãα-Dyã, at 1320 and 1170 °C, respectively. The third three-phase field results from an invariant eutectic four-phase equilibrium, L â ãTiDySiã + ãα-Dyã + ãDy5Si3ã, at 1157 ± 6 °C. The fourth one is the result of a P-type equilibrium, L + ãTi5Si3ã + ãDy5Si3ã â ãTiDySiã. The temperature of the latter was estimated to be within the interval 1650-1700 °C.
Keywords
Related Topics
Physical Sciences and Engineering
Materials Science
Metals and Alloys
Authors
Yu. Fartushna, K. Meleshevich, A. Samelyuk, M. Bulanova,