Startseite AThermodynamic Assessment of the Pr–Al System
Artikel
Lizenziert
Nicht lizenziert Erfordert eine Authentifizierung

AThermodynamic Assessment of the Pr–Al System

  • Fucheng Yin EMAIL logo , Xuping Su , Zhi Li und Ping Zhang
Veröffentlicht/Copyright: 7. Januar 2022
Veröffentlichen auch Sie bei De Gruyter Brill

Abstract

Optimized descriptions of the phase diagram and thermodynamic properties of the Pr–Al system have been obtained from experimental thermodynamic and phase diagram data by means of the computer program THERMOCALC based on the least squares method, using models for the Gibbs energy of individual phases. The system contains six intermetallic compounds. The calculated standard enthalpies of formation of Pr3Al, Pr2Al, PrAl, PrAl2, PrAL3, Pr3Al11 are: –25.4, –33.5, –44.0, –54.9, –47.5, and –42.3 kJ/mol, respectively. A consistent set of thermodynamic parameters was derived. Optimized and experimental data are in good agreement.


F. Yin Institute of Materials Research School of Mechanical Engineering Xiangtan University Xiangtan 411105 Hunan, P.R. China, Fax: +86 732 829 2333

  1. This investigation was financially supported by National Science Foundation of China (No. 19772044) and the Youth Science Foundation of Hunan Educational Committees, China (No. 99B01), which are gratefully acknowledged.

References

1 Chan, K.S.: Metall. Trans. A 20 (1989) 155.10.1007/BF02647502Suche in Google Scholar

2 Gasgnier, M.; Schiffmacher, G.; Caro, P.: J. Less-Common Met. 50 (1976) 177.10.1016/0022-5088(76)90158-2Suche in Google Scholar

3 Gasgnier, M.: J. Less-Common Met. 83 (1982) 117.10.1016/0022-5088(82)90180-1Suche in Google Scholar

4 Inoue, A.; Ohtera, K.; Masumoto, T.: Sci. RITU A 35 (1) (1990) 115.Suche in Google Scholar

5 Sakai, T.; Oguro, K.; Miyamura, H.; Kuriyama, N.; Kato, A.; Ishikawa, H.: J. Less-Common Met. 161 (1990) 193.10.1016/0022-5088(90)90027-HSuche in Google Scholar

6 Sommer, F.; Keita, M.: J. Less-Common Met. 136 (1987) 101.10.1016/0022-5088(87)90013-0Suche in Google Scholar

7 Kaufman, L.; Bernstein, H.: Computer Calculation of Phase Diagram, Academic Press, New York (1970).Suche in Google Scholar

8 Dinsdale, A.T.: CALPHAD 15 (1991) 317.10.1016/0364-5916(91)90030-NSuche in Google Scholar

9 Redlich, O.; Kister, A.: Ind. Eng. Chem. 40 (1948) 345.10.1021/ie50458a036Suche in Google Scholar

10 Canneri, G.; Rossi, A.: Alluminio 2 (1933) 87.Suche in Google Scholar

11 Vogel, R.; Heumann, T.: Z. Metallkd. 35 (1943) 2.Suche in Google Scholar

12 Buschow, K.H.J.; vanVucht, J.H.N.: Z. Metallkd. 48 (1957) 253.Suche in Google Scholar

13 Saccone, A.; Cardinale, A.M.; Delfino, S.; Ferro, R.: Z. Metallkd. 87 (1996) 82.Suche in Google Scholar

14 Gschneidner, K.A.; Calderwood, F.W.: Bull. Alloy Phase Diagr. 9 (1988) 686.10.1007/BF02883168Suche in Google Scholar

15 Gomes de Mesquita, A.H.; Buschow, K.H.J.: Acta Crystallogr. 22 (1967) 497.10.1107/S0365110X67001045Suche in Google Scholar

16 Drits, M.E.; Kadaner, E.S.; Shoa, N.D.: Izv. Akad. Nauk SSSR. Met. 1 (1969) 219 [in Russian].Suche in Google Scholar

17 Canneri, G.; Rossi, A.: Gazz. Chim. Ital. 63 (1933) 182.Suche in Google Scholar

18 Kubaschewski, O.; Evans, E.L.: Metallurgical Thermochemics, 2nd ed., John Wiley and Sons, New York (1956)Suche in Google Scholar

19 Ferro, R.; Borzone, G.; Parodi, N.; Cacciamani, G.: J. Phase Equilibria 15 (1994) 317.10.1007/BF02669222Suche in Google Scholar

20 Kononenko, V.I.; Shevchenko, V.G.; Sukhman, A.L.: Izv. Akad. Nauk SSSR, Met. 6 (1979) 85 [in Russian].Suche in Google Scholar

21 Sundman, B.; Jansson, B.; Andersson, J.-O.: CALPHAD 9 (1985) 153.10.1016/0364-5916(85)90021-5Suche in Google Scholar

22 Yin, F., Su, X.; Li, Z.; Huang, M.; Shi, Y.: J. Alloys Compounds 302 (2000) 169.10.1016/S0925-8388(00)00679-4Suche in Google Scholar

Received: 2000-03-22
Published Online: 2022-01-07

© 2001 Carl Hanser Verlag, München

Artikel in diesem Heft

  1. Contents
  2. Aufsätze/Articles
  3. Electron Back Scatter Diffraction and Synchrotron X-Ray Peak Profile Analysis as Tools for Microstructural Characterization of Large Strain Work Hardened Metals
  4. Influences of Material Inhomogeneities in 100Cr6 Steel on the Electrochemical Metal Dissolution Process
  5. An Investigation on Cold Roll Welding of Copper to Aluminum Using Electrical Resistivity
  6. Effect of Forced Convection by Accelerating Crucible Rotation on Directional Solidification
  7. Phase Transformation Behaviour and Microstructure of Ti51Pd30Ni19 Alloy
  8. Experimental Study and Reassessment of the Ni–Hf Binary System
  9. AThermodynamic Assessment of the Pr–Al System
  10. Phase Diagram and Thermodynamic Properties of the Tl – In – Te System
  11. The Excess Enthalpies of Liquid In–Bi–Te and Sb–Bi–Te Alloys
  12. Thermodynamic Evaluation of Binary Phase Diagrams of Small Particle Systems
  13. On the Hot Workability of ELI Grade Titanium Alloy Ti–6Al–4V
  14. Revelation of Anomalous Creep of the Cu–30 mass% Zn Alloy Related with Dislocation Hardening under High-Temperature Creep Deformation
  15. Formation of Nanocrystalline Phases during Decomposition of Amorphous Ni–P Alloys by Continuous Linear Heating
  16. Lattice Parameters of Metastable Structures in Quenched Fe-Mn Alloys. Part II: hcp Phase
  17. Einfluss dynamischer Reckalterung auf Lebensdauer und Mikrostruktur bei zyklischer Beanspruchung von X22CrMoV121
  18. Development of SMD 32.768 kHz Tuning Fork-Type Crystals Using Photolithography and Selective Etching Process
  19. Mitteilungen/Notifications
  20. Personen
  21. Mitteilungen
  22. Bücher
  23. Tagungen
Heruntergeladen am 26.10.2025 von https://www.degruyterbrill.com/document/doi/10.3139/ijmr-2001-0089/html
Button zum nach oben scrollen