Abstract
A consistent thermodynamic data set for the Ru–Si system is obtained by a computer-aided least-squares method applied to the experimental phase diagram and thermodynamic data. The liquid phase is described by the Redlich-Kister formula. All of the compounds, Ru2Si, Ru4Si3, RuSi, and Ru2Si3, are treated as stoichiometric phases. Comparisons between the calculated and measured phase diagram and thermodynamic quantities show that all of the accurate experimental information is well accounted for by the thermodynamic description.
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One of the authors (Yong Du) gratefully acknowledges the visiting scholar grant released by Ministry of Education of P. R. China. This work is supported by the Austrian Science Foundation under grants no. P10736 and P13113.
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© 2001 Carl Hanser Verlag, München
Articles in the same Issue
- Frontmatter
- Aufsätze/Articles
- On Properties of Interstitials and Vacancies in Stainless Steels: A Review
- Thermodynamic Assessment of the Ru–Si System
- The Phase Diagram of the In–Sb–Sn System
- The Excess Enthalpies of Liquid Ag-Ge-Te and Ag-Sn-Te Alloys
- A Model for the Calculation of the Bainitic Phase Transformation Kinetics from Dilatometric Data
- Untersuchung zum Vergleich der σ-Phasenausscheidung in einem rostfreien Superferrit und einem Duplex-Stahl
- Effect of Different Rolling Schedules on the Mechanical Properties and Microstructure of X60 Type HSLA Steel
- Thermochemical Study of High Temperature Corrosion of Iron in a Diluted HCl + SO2 Environment
- Calculation of the Debye Temperature and Study of the Lattice Dynamics of Fe80–xNixCr20 by 57Fe Mössbauer Spectroscopy
- Surface Self-Cleaning Effect of Zn-22Al Alloy during Superplastic Deformation
- Acoustic Emission and Strain Localization in FCC Single Crystals Compressed in Channel-Die at Low Temperature
- Wetting of Alumina, Iron and Stainless Steel Substrates by Molten Magnesium
- Split-Induced Lüders Bands in Non-Sag Tungsten Wires during Torsion
- The Structure and Crystallization of Amorphous Ni–Fe–P–B Alloys Prepared by Electrons Plating
- The Formation of Aluminum Phosphide in Aluminum Melt Treated with an Al–Fe–P Inoculant Addition
- Vapor Pressure and Critical Data for Uranium
- Mitteilungen/Notifications
- Personen
- Mitteilungen/News
- Bücher/Books
- Tagungen/Conferences
Articles in the same Issue
- Frontmatter
- Aufsätze/Articles
- On Properties of Interstitials and Vacancies in Stainless Steels: A Review
- Thermodynamic Assessment of the Ru–Si System
- The Phase Diagram of the In–Sb–Sn System
- The Excess Enthalpies of Liquid Ag-Ge-Te and Ag-Sn-Te Alloys
- A Model for the Calculation of the Bainitic Phase Transformation Kinetics from Dilatometric Data
- Untersuchung zum Vergleich der σ-Phasenausscheidung in einem rostfreien Superferrit und einem Duplex-Stahl
- Effect of Different Rolling Schedules on the Mechanical Properties and Microstructure of X60 Type HSLA Steel
- Thermochemical Study of High Temperature Corrosion of Iron in a Diluted HCl + SO2 Environment
- Calculation of the Debye Temperature and Study of the Lattice Dynamics of Fe80–xNixCr20 by 57Fe Mössbauer Spectroscopy
- Surface Self-Cleaning Effect of Zn-22Al Alloy during Superplastic Deformation
- Acoustic Emission and Strain Localization in FCC Single Crystals Compressed in Channel-Die at Low Temperature
- Wetting of Alumina, Iron and Stainless Steel Substrates by Molten Magnesium
- Split-Induced Lüders Bands in Non-Sag Tungsten Wires during Torsion
- The Structure and Crystallization of Amorphous Ni–Fe–P–B Alloys Prepared by Electrons Plating
- The Formation of Aluminum Phosphide in Aluminum Melt Treated with an Al–Fe–P Inoculant Addition
- Vapor Pressure and Critical Data for Uranium
- Mitteilungen/Notifications
- Personen
- Mitteilungen/News
- Bücher/Books
- Tagungen/Conferences