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Published in: Metallurgical and Materials Transactions A 11/2020

15-09-2020

Key Experiments and Thermodynamic Description of the Co-Nb-Ni System

Authors: Chenyang Zhou, Cuiping Guo, Jingbo Li, Changrong Li, Zhenmin Du

Published in: Metallurgical and Materials Transactions A | Issue 11/2020

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Abstract

Equilibrated alloys were characterized using SEM/EDX and XRD methods to identify the Co-Nb-Ni phase equilibria at 1100 °C and 900 °C. The isothermal section at 1100 °C was re-constructed and the partial phase relationships at 900 °C were further validated. The crystal structure of the ternary compound τ was proved to be of the Mg3Cd type with Pearson symbol hP8 and space group P63/mmc. The addition of nickel can increase the phase stability of Co7Nb2. The Co-Nb, Ni-Nb, and Co-Nb-Ni systems were assessed using the CALPHAD (CALculation of PHAse Diagram) method. The present experimental and calculated results can be used as a reference for developing and designing Co/Ni-based intermetallics and superalloys.

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Literature
1.
go back to reference [1]R.C. Reed: The Superalloys: Fundamentals and Applications, Cambridge University Press, Cambridge, 2006. [1]R.C. Reed: The Superalloys: Fundamentals and Applications, Cambridge University Press, Cambridge, 2006.
2.
go back to reference [2]A.M.S. Costa, J.P. Oliveira, M.V. Salgado, C.A. Nunes, E.S.N. Lopes, N.V.V. Mogili, A.J. Ramirez, and A.P. Tschiptschin: Mater. Sci. Eng. A, 2018, vol. 730, pp. 66-72. [2]A.M.S. Costa, J.P. Oliveira, M.V. Salgado, C.A. Nunes, E.S.N. Lopes, N.V.V. Mogili, A.J. Ramirez, and A.P. Tschiptschin: Mater. Sci. Eng. A, 2018, vol. 730, pp. 66-72.
3.
go back to reference [3]X. Liu, Y. Pan, Y. Chen, J. Han, S. Yang, J. Ruan, C. Wang, Y. Yang, and Y. Li: Metals, 2018, vol. 8, pp. 563. [3]X. Liu, Y. Pan, Y. Chen, J. Han, S. Yang, J. Ruan, C. Wang, Y. Yang, and Y. Li: Metals, 2018, vol. 8, pp. 563.
4.
go back to reference [4]K.A. Christofidou, M.C. Hardy, H.Y. Li, C. Argyrakis, H. Kitaguchi, N.G. Jones, P.M. Mignanelli, A.S. Wilson, O.M.D.M. Messé, E.J. Pickering, R.J. Gilbert, C.M.F. Rae, S. Yu, A. Evans, D. Child, P. Bowen, and H.J. Stone: Metall. Mater. Trans. A, 2018, vol. 49, pp. 3896-907. [4]K.A. Christofidou, M.C. Hardy, H.Y. Li, C. Argyrakis, H. Kitaguchi, N.G. Jones, P.M. Mignanelli, A.S. Wilson, O.M.D.M. Messé, E.J. Pickering, R.J. Gilbert, C.M.F. Rae, S. Yu, A. Evans, D. Child, P. Bowen, and H.J. Stone: Metall. Mater. Trans. A, 2018, vol. 49, pp. 3896-907.
5.
go back to reference [5]S. Antonov, M. Detrois, and S. Tin: Metall. Mater. Trans. A, 2018, vol. 49, pp. 305-20. [5]S. Antonov, M. Detrois, and S. Tin: Metall. Mater. Trans. A, 2018, vol. 49, pp. 305-20.
6.
go back to reference [6]M. Detrois, S. Antonov, and S. Tin: Intermetallics, 2019, vol. 104, pp. 103-12. [6]M. Detrois, S. Antonov, and S. Tin: Intermetallics, 2019, vol. 104, pp. 103-12.
7.
go back to reference [7]R.K. Shaipov, E.Yu. Kerimov, and E.M. Slyusarenko: J. Alloys Compd., 2018, vol. 742, pp. 466-79. [7]R.K. Shaipov, E.Yu. Kerimov, and E.M. Slyusarenko: J. Alloys Compd., 2018, vol. 742, pp. 466-79.
8.
go back to reference [8]L. Zhu, C. Wei, L. Jiang, Z. Jin, and J.C. Zhao: Intermetallics, 2018, vol. 93, pp. 20-9. [8]L. Zhu, C. Wei, L. Jiang, Z. Jin, and J.C. Zhao: Intermetallics, 2018, vol. 93, pp. 20-9.
9.
go back to reference [9]A. Leineweber, G. Kreiner, D. Grüner, R. Dinnebier, and F. Stein: Intermetallics, 2012, vol. 25, pp. 34-41. [9]A. Leineweber, G. Kreiner, D. Grüner, R. Dinnebier, and F. Stein: Intermetallics, 2012, vol. 25, pp. 34-41.
10.
go back to reference [10]W. Köster and W. Mulfinger: Z. Metallkd., 1938, vol. 30, pp. 348-50. [10]W. Köster and W. Mulfinger: Z. Metallkd., 1938, vol. 30, pp. 348-50.
11.
go back to reference [11]S. Saito and P.A. Beck: Trans. AIME, 1960, vol. 218, pp. 670-4. [11]S. Saito and P.A. Beck: Trans. AIME, 1960, vol. 218, pp. 670-4.
12.
go back to reference [12]R.E. Seebold and L.S. Birks: J. Nucl. Mater., 1961, vol. 3, pp. 260-6. [12]R.E. Seebold and L.S. Birks: J. Nucl. Mater., 1961, vol. 3, pp. 260-6.
13.
go back to reference [13]A. Raman: Trans. AIME, 1966, vol. 236, pp. 561-5. [13]A. Raman: Trans. AIME, 1966, vol. 236, pp. 561-5.
14.
go back to reference [14]J.K. Pargeter and W. Hume-Rothery: J. Less-Common Met., 1967, vol. 12, pp. 366-74. [14]J.K. Pargeter and W. Hume-Rothery: J. Less-Common Met., 1967, vol. 12, pp. 366-74.
15.
go back to reference S.K. Bataleva, V.V. Kuprina, V.Y. Markiv, V.V. Burnashova, G.N. Ronami, and S.M. Kuznetsova: Vestn. Mosk. Univ. Ser. Khim. 1970, vol. 11, pp. 432-37. S.K. Bataleva, V.V. Kuprina, V.Y. Markiv, V.V. Burnashova, G.N. Ronami, and S.M. Kuznetsova: Vestn. Mosk. Univ. Ser. Khim. 1970, vol. 11, pp. 432-37.
16.
go back to reference [16]N.F. Shen, I.P. Jones, and J.N. Pratt: Mater. Chem. Phys., 1986, vol. 15, pp. 15-25. [16]N.F. Shen, I.P. Jones, and J.N. Pratt: Mater. Chem. Phys., 1986, vol. 15, pp. 15-25.
17.
go back to reference [17]T.B. Massalski, H. Okamoto, P.R. Subramanian, and L. Kacprzak: Binary Alloy Phase Diagrams (2nd Edition), ASM International, Ohio, 1990. [17]T.B. Massalski, H. Okamoto, P.R. Subramanian, and L. Kacprzak: Binary Alloy Phase Diagrams (2nd Edition), ASM International, Ohio, 1990.
18.
go back to reference [18]W. Sprengel, M. Denkinger, and H. Mehrer: Intermetallics, 1994, vol. 2, pp. 127-35. [18]W. Sprengel, M. Denkinger, and H. Mehrer: Intermetallics, 1994, vol. 2, pp. 127-35.
19.
go back to reference [19]F. Stein, D. Jiang, M. Palm, G. Sauthoff, D. Grüner, and G. Kreiner: Intermetallics, 2008, vol. 16, pp. 785-92. [19]F. Stein, D. Jiang, M. Palm, G. Sauthoff, D. Grüner, and G. Kreiner: Intermetallics, 2008, vol. 16, pp. 785-92.
20.
go back to reference [20]V.N. Drobyshev and T.N. Rezukhina: Zh. Fiz. Khim., 1965, vol. 39, pp. 151-5. [20]V.N. Drobyshev and T.N. Rezukhina: Zh. Fiz. Khim., 1965, vol. 39, pp. 151-5.
21.
go back to reference [21]S.V. Meschel and O.J. Kleppa: J. Alloys Compd., 2006, vol. 415, pp. 143-9. [21]S.V. Meschel and O.J. Kleppa: J. Alloys Compd., 2006, vol. 415, pp. 143-9.
23.
go back to reference [23]A. Jain, S.P. Ong, G. Hautier, W. Chen, W.D. Richards, S. Dacek, S. Cholia, D. Gunter, D. Skinner, G. Ceder, and K.A. Persson: APL Mater., 2013, vol. 1, pp. 011002. [23]A. Jain, S.P. Ong, G. Hautier, W. Chen, W.D. Richards, S. Dacek, S. Cholia, D. Gunter, D. Skinner, G. Ceder, and K.A. Persson: APL Mater., 2013, vol. 1, pp. 011002.
25.
go back to reference [25]J.E. Saal, S. Kirklin, M. Aykol, B. Meredig, and C. Wolverton: JOM, 2013, vol. 65, pp. 1501-9. [25]J.E. Saal, S. Kirklin, M. Aykol, B. Meredig, and C. Wolverton: JOM, 2013, vol. 65, pp. 1501-9.
26.
go back to reference [26]S. Kirklin, J.E. Saal, B. Meredig, A. Thompson, J.W. Doak, M. Aykol, S. Rühl, and C. Wolverton: NPJ Comput. Mater., 2015, vol. 1, pp. 15010. [26]S. Kirklin, J.E. Saal, B. Meredig, A. Thompson, J.W. Doak, M. Aykol, S. Rühl, and C. Wolverton: NPJ Comput. Mater., 2015, vol. 1, pp. 15010.
27.
go back to reference [27]L. Kaufman and H. Nesor: Calphad, 1978, vol. 2, pp. 81-108. [27]L. Kaufman and H. Nesor: Calphad, 1978, vol. 2, pp. 81-108.
28.
go back to reference R. Bormann and R. Busch: J. Non-Cryst. Solids, 1990, vol. 117-118, pp. 539-42. R. Bormann and R. Busch: J. Non-Cryst. Solids, 1990, vol. 117-118, pp. 539-42.
29.
go back to reference [29]K.C.H. Kumar, I. Ansara, P. Wollants, and L. Delaey: J. Alloys Compd., 1998, vol. 267, pp. 105-12. [29]K.C.H. Kumar, I. Ansara, P. Wollants, and L. Delaey: J. Alloys Compd., 1998, vol. 267, pp. 105-12.
30.
go back to reference [30]C. He, F. Stein, and M. Palm: J. Alloys Compd., 2015, vol. 637, pp. 361-75. [30]C. He, F. Stein, and M. Palm: J. Alloys Compd., 2015, vol. 637, pp. 361-75.
31.
go back to reference [31]A.F. Guillermet: Z. Metallkd., 1987, vol. 78, pp. 639-47. [31]A.F. Guillermet: Z. Metallkd., 1987, vol. 78, pp. 639-47.
32.
go back to reference [32]G. Grube, O. Kubaschewski, and K. Zwiauer: Z. Elektrochem., 1939, vol. 45, pp. 881-4. [32]G. Grube, O. Kubaschewski, and K. Zwiauer: Z. Elektrochem., 1939, vol. 45, pp. 881-4.
33.
go back to reference [33]S.A. Pogodin and A.N. Selikmann: Dokl. Akad. Nauk SSSR, 1941, vol. 31, pp. 895-7. [33]S.A. Pogodin and A.N. Selikmann: Dokl. Akad. Nauk SSSR, 1941, vol. 31, pp. 895-7.
34.
go back to reference [34]I. J. Duerden and W. Hume-Rothery: J. Less-Common Met., 1966, vol. 11, pp. 381-7. [34]I. J. Duerden and W. Hume-Rothery: J. Less-Common Met., 1966, vol. 11, pp. 381-7.
35.
go back to reference [35]L.N. Guseva, R.S. Mints, and Y.A. Malkov: Russ. Metall., 1969, vol. 5, pp. 120-2. [35]L.N. Guseva, R.S. Mints, and Y.A. Malkov: Russ. Metall., 1969, vol. 5, pp. 120-2.
36.
go back to reference A. Wicker, C. Allibert, J. Oriole, E. Bonnier (1970) C R Hebd Séances Acad Sci Ser C 271:273-75. A. Wicker, C. Allibert, J. Oriole, E. Bonnier (1970) C R Hebd Séances Acad Sci Ser C 271:273-75.
37.
go back to reference [37]C.J. van der Wekken, R. Taggart, and D.H. Polonis: Met. Sci., 1971, vol. 5, pp. 219-23. [37]C.J. van der Wekken, R. Taggart, and D.H. Polonis: Met. Sci., 1971, vol. 5, pp. 219-23.
38.
go back to reference [38]Y. Muramatsu, F. Roux, and A. Vignes: Trans. JIM, 1975, vol. 16, pp. 61-71. [38]Y. Muramatsu, F. Roux, and A. Vignes: Trans. JIM, 1975, vol. 16, pp. 61-71.
39.
go back to reference [39]P. Nash and A. Nash: Bull. Alloy Phase Diag., 1986, vol. 7, pp. 124-30. [39]P. Nash and A. Nash: Bull. Alloy Phase Diag., 1986, vol. 7, pp. 124-30.
40.
go back to reference [40]J.M. Joubert and Y. Feutelais: Calphad, 2002, vol. 26, pp. 427-38. [40]J.M. Joubert and Y. Feutelais: Calphad, 2002, vol. 26, pp. 427-38.
41.
go back to reference [41]H. Chen, Y. Du, H. Xu, Y. Liu, and J.C. Schuster: J. Mater. Sci., 2005, vol. 40, pp. 6019-22. [41]H. Chen, Y. Du, H. Xu, Y. Liu, and J.C. Schuster: J. Mater. Sci., 2005, vol. 40, pp. 6019-22.
42.
go back to reference [42]K. Kajikawa, K. Oikawa, F. Takahashi, H. Yamada, and K. Anzai: Mater. Trans., 2010, vol. 51, pp. 781-6. [42]K. Kajikawa, K. Oikawa, F. Takahashi, H. Yamada, and K. Anzai: Mater. Trans., 2010, vol. 51, pp. 781-6.
43.
go back to reference [43]L.S. Chistyakov, K.V. Grigorovich, and A.Y. Stomakhin: Izv. Vyssh. Uch. Zav. Chernaya Metall., 1993, vol. 1, pp. 83-4. [43]L.S. Chistyakov, K.V. Grigorovich, and A.Y. Stomakhin: Izv. Vyssh. Uch. Zav. Chernaya Metall., 1993, vol. 1, pp. 83-4.
44.
go back to reference [44]K. Schaefers, J. Qin, M. Rösner-Kuhn, and M.G. Frohberg: Can. Metall., 1996, vol. 35, pp. 47-51. [44]K. Schaefers, J. Qin, M. Rösner-Kuhn, and M.G. Frohberg: Can. Metall., 1996, vol. 35, pp. 47-51.
45.
go back to reference [45]V.S. Sudavtsova: Russ. Metall., 1998, vol. 1, pp. 54-6. [45]V.S. Sudavtsova: Russ. Metall., 1998, vol. 1, pp. 54-6.
46.
go back to reference B.B. Argent and B.J. Piearcey: The Physical Chemistry of Metallic Solutions and Intermetallic Compounds(National Physical Laboratory Symposium No. 9), 1959, vol. 1, pp. 398-402. B.B. Argent and B.J. Piearcey: The Physical Chemistry of Metallic Solutions and Intermetallic Compounds(National Physical Laboratory Symposium No. 9), 1959, vol. 1, pp. 398-402.
47.
go back to reference [47]E.M. Sokolovskaya, L.L. Meshkov, and G.A. Tikhankin: Dokl. Akad. Nauk SSSR, 1976, vol. 229, pp. 914-6. [47]E.M. Sokolovskaya, L.L. Meshkov, and G.A. Tikhankin: Dokl. Akad. Nauk SSSR, 1976, vol. 229, pp. 914-6.
48.
go back to reference [48]V.I. Alekseev, G.B. Petrov, and G.V. Shcherbedinskiy: Russ. Metall., 1978, vol. 5, pp. 47-50. [48]V.I. Alekseev, G.B. Petrov, and G.V. Shcherbedinskiy: Russ. Metall., 1978, vol. 5, pp. 47-50.
49.
go back to reference [49]N.P. Lyakishev, Y.P. Snitko, V.I. Alekseev, and G.A. Levshin: Zh. Fiz. Khim., 1983, vol. 57, pp. 180-2. [49]N.P. Lyakishev, Y.P. Snitko, V.I. Alekseev, and G.A. Levshin: Zh. Fiz. Khim., 1983, vol. 57, pp. 180-2.
50.
go back to reference [50]P. Ravindran, G. Subramoniam, and R. Asokamani: Phys. Rev. B, 1996, vol. 53, pp. 1129-37. [50]P. Ravindran, G. Subramoniam, and R. Asokamani: Phys. Rev. B, 1996, vol. 53, pp. 1129-37.
51.
go back to reference [51]M. Mathon, D. Connétable, B. Sundman, and J. Lacaze: Calphad, 2009, vol. 33, pp. 136-61. [51]M. Mathon, D. Connétable, B. Sundman, and J. Lacaze: Calphad, 2009, vol. 33, pp. 136-61.
52.
go back to reference [52]D. Connétable, M. Mathon, and J. Lacaze: Calphad, 2011, vol. 35, pp. 588-93. [52]D. Connétable, M. Mathon, and J. Lacaze: Calphad, 2011, vol. 35, pp. 588-93.
53.
go back to reference [53]Y. Cao, J. Zhu, Z. Nong, X. Yang, Y. Liu, and Z. Lai: Comput. Mater. Sci., 2013, vol. 77, pp. 208-13. [53]Y. Cao, J. Zhu, Z. Nong, X. Yang, Y. Liu, and Z. Lai: Comput. Mater. Sci., 2013, vol. 77, pp. 208-13.
54.
go back to reference [54]D. Connétable, F. Galliano, G. Odemer, C. Blanc, and É. Andrieu: J. Alloys Compd., 2014, vol. 610, pp. 347-51. [54]D. Connétable, F. Galliano, G. Odemer, C. Blanc, and É. Andrieu: J. Alloys Compd., 2014, vol. 610, pp. 347-51.
55.
go back to reference Y.C. Lin, S.C. Luo, M.S. Chen, D.G. He, C.Y. Zhao: J. Alloys Compd. 2016, vol. 688, pp. 285-93. Y.C. Lin, S.C. Luo, M.S. Chen, D.G. He, C.Y. Zhao: J. Alloys Compd. 2016, vol. 688, pp. 285-93.
56.
go back to reference [56]Y.C. Lin, X.Y. Jiang, S.C. Luo, and D.G. He: Mater. Des., 2018, vol. 139, pp. 16-24. [56]Y.C. Lin, X.Y. Jiang, S.C. Luo, and D.G. He: Mater. Des., 2018, vol. 139, pp. 16-24.
57.
go back to reference [57]K. Zeng and Z. Jin: Scr. Metall., 1992, vol. 26, pp. 417-22. [57]K. Zeng and Z. Jin: Scr. Metall., 1992, vol. 26, pp. 417-22.
58.
go back to reference [58]K. Zeng, X. Zeng, and Z. Jin, J. Alloys Compd., 1992, vol. 179, pp. 177-85. [58]K. Zeng, X. Zeng, and Z. Jin, J. Alloys Compd., 1992, vol. 179, pp. 177-85.
59.
go back to reference [59]A. Bolcavage and U.R. Kattner: J. Phase Equilib., 1996, vol. 17, pp. 92-100. [59]A. Bolcavage and U.R. Kattner: J. Phase Equilib., 1996, vol. 17, pp. 92-100.
60.
go back to reference [60]J.M. Joubert, B. Sundman, and N. Dupin: Calphad, 2004, vol. 28, pp. 299-306. [60]J.M. Joubert, B. Sundman, and N. Dupin: Calphad, 2004, vol. 28, pp. 299-306.
61.
go back to reference [61]H. Chen and Y. Du: Calphad, 2006, vol. 30, pp. 308-15. [61]H. Chen and Y. Du: Calphad, 2006, vol. 30, pp. 308-15.
62.
go back to reference L.A. Panteleimonov, O.G. Burtseva, and V.V. Zubenko: Vestn. Mosk. Univ. Ser. Khim. 1982, vol. 37, pp. 71-2. L.A. Panteleimonov, O.G. Burtseva, and V.V. Zubenko: Vestn. Mosk. Univ. Ser. Khim. 1982, vol. 37, pp. 71-2.
63.
go back to reference [63]K.P. Gupta: J. Phase Equilib., 1997, vol. 18, pp. 419-25. [63]K.P. Gupta: J. Phase Equilib., 1997, vol. 18, pp. 419-25.
64.
go back to reference [64]Y.M. Wang, H.S. Liu, F. Zheng, and Z.P. Jin: J. Alloys Compd., 2008, vol. 454, pp. 501-5. [64]Y.M. Wang, H.S. Liu, F. Zheng, and Z.P. Jin: J. Alloys Compd., 2008, vol. 454, pp. 501-5.
65.
go back to reference [65]Y. Feng, R. Wang, K. Yu, and D. Wen: Rare Metals, 2008, vol. 27, pp. 83-8. [65]Y. Feng, R. Wang, K. Yu, and D. Wen: Rare Metals, 2008, vol. 27, pp. 83-8.
66.
go back to reference [66]S. Ida, R. Yamagata, H. Nakashima, S. Kobayashi, and M. Takeyama: J. Phase Equilib. Diffus., 2019, vol. 40, pp. 570-82. [66]S. Ida, R. Yamagata, H. Nakashima, S. Kobayashi, and M. Takeyama: J. Phase Equilib. Diffus., 2019, vol. 40, pp. 570-82.
67.
go back to reference [67]A. Taylor and R.W. Floyd: Acta Cryst., 1950, vol. 3, pp. 285-9. [67]A. Taylor and R.W. Floyd: Acta Cryst., 1950, vol. 3, pp. 285-9.
68.
go back to reference [68]M. Yousuf, P.C. Sahu, H.K. Jajoo, S. Rajagopalan, and K.G. Rajan: J. Phys. F, 1986, vol. 16, pp. 373-80. [68]M. Yousuf, P.C. Sahu, H.K. Jajoo, S. Rajagopalan, and K.G. Rajan: J. Phys. F, 1986, vol. 16, pp. 373-80.
69.
go back to reference [69]L.J.E. Hofer and W.C. Peebles: JACS, 1947, vol. 69, pp. 893-9. [69]L.J.E. Hofer and W.C. Peebles: JACS, 1947, vol. 69, pp. 893-9.
70.
go back to reference [70]J.W. Edwards, R. Speiser, and H.L. Johnston: J. Appl. Phys., 1951, vol. 22, pp. 424-8. [70]J.W. Edwards, R. Speiser, and H.L. Johnston: J. Appl. Phys., 1951, vol. 22, pp. 424-8.
71.
go back to reference C.R. Hunt and A. Raman: Z. Metallkd., 1968, vol. 59, pp. 701-7. C.R. Hunt and A. Raman: Z. Metallkd., 1968, vol. 59, pp. 701-7.
72.
go back to reference [72]A. Kaufman, N.J. Hoffman, and H. Lipson: Scr. Metall., 1969, vol. 3, pp. 715-20. [72]A. Kaufman, N.J. Hoffman, and H. Lipson: Scr. Metall., 1969, vol. 3, pp. 715-20.
73.
go back to reference Jade 5.0, XRD Pattern Processing Materials Data Inc., 1999. Jade 5.0, XRD Pattern Processing Materials Data Inc., 1999.
74.
go back to reference [74]J. Rodríguez-Carvajal: Phys. B, 1993, vol. 192, pp. 55-69. [74]J. Rodríguez-Carvajal: Phys. B, 1993, vol. 192, pp. 55-69.
75.
go back to reference [75]G. Kresse and J. Furthmüller: Phys. Rev. B, 1996, vol. 54, pp. 11169-86. [75]G. Kresse and J. Furthmüller: Phys. Rev. B, 1996, vol. 54, pp. 11169-86.
76.
go back to reference [76]G. Kresse and D. Joubert: Phys. Rev. B, 1999, vol. 59, pp. 1758-75. [76]G. Kresse and D. Joubert: Phys. Rev. B, 1999, vol. 59, pp. 1758-75.
77.
go back to reference [77]J.P. Perdew, K. Burke, and M. Ernzerhof: Phys. Rev. Lett., 1996, vol. 77, pp. 3865-8. [77]J.P. Perdew, K. Burke, and M. Ernzerhof: Phys. Rev. Lett., 1996, vol. 77, pp. 3865-8.
78.
go back to reference [78]H.J. Monkhorst and J.D. Pack: Phys. Rev. B, 1976, vol. 13, pp. 5188-92. [78]H.J. Monkhorst and J.D. Pack: Phys. Rev. B, 1976, vol. 13, pp. 5188-92.
79.
go back to reference [79]F. Birch: J. Geophys. Res., 1978, vol. 83, pp. 1257-68. [79]F. Birch: J. Geophys. Res., 1978, vol. 83, pp. 1257-68.
81.
go back to reference [81]M. Hillert and M. Jarl: Calphad, 1978, vol. 2, pp. 227-38. [81]M. Hillert and M. Jarl: Calphad, 1978, vol. 2, pp. 227-38.
82.
go back to reference [82]O. Redlich and A.T. Kister: Ind. Eng. Chem. 1948, vol. 40, pp. 345-8. [82]O. Redlich and A.T. Kister: Ind. Eng. Chem. 1948, vol. 40, pp. 345-8.
83.
go back to reference [83]J.M. Joubert and N. Dupin: Intermetallics, 2004, vol. 12, pp. 1373-80. [83]J.M. Joubert and N. Dupin: Intermetallics, 2004, vol. 12, pp. 1373-80.
84.
go back to reference [84]B. Sundman, B. Jansson, and J.O. Andersson: Calphad, 1985, vol. 9, pp. 153-90. [84]B. Sundman, B. Jansson, and J.O. Andersson: Calphad, 1985, vol. 9, pp. 153-90.
85.
go back to reference [85]J.O. Andersson, T. Helander, L. Höglund, P. Shi, and B. Sundman: Calphad, 2002, vol. 26, pp. 273-312. [85]J.O. Andersson, T. Helander, L. Höglund, P. Shi, and B. Sundman: Calphad, 2002, vol. 26, pp. 273-312.
Metadata
Title
Key Experiments and Thermodynamic Description of the Co-Nb-Ni System
Authors
Chenyang Zhou
Cuiping Guo
Jingbo Li
Changrong Li
Zhenmin Du
Publication date
15-09-2020
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 11/2020
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-020-05963-2

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