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Published in: Metallurgical and Materials Transactions A 6/2018

14-03-2018

Microstructures and Surface Stabilities of {Ni-0.4C-6Ta-xCr, 0 ≤ x ≤ 50 Wt Pct} Cast Alloys at High Temperature

Author: Patrice Berthod

Published in: Metallurgical and Materials Transactions A | Issue 6/2018

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Abstract

Nickel-based cast alloys rich in chromium and reinforced by TaC carbides are potentially very interesting alloys for applications at elevated temperatures. Unfortunately, unlike cobalt-chromium and iron-chromium alloys, it is difficult to obtain exclusively TaC as primary carbides in Ni-Cr alloys. In alloys containing 30 wt pct Cr tantalum, carbides coexist with chromium carbides. The latter tend to weaken the alloy at elevated temperatures because they become rapidly spherical and then quickly lose their reinforcing effect. In this work, we attempted to stabilize TaC as a single carbide phase by testing different chromium contents in the [0, 50 wt pct] range. Six alloys containing 0.4C and 6Ta, weight contents corresponding to equivalent molar contents, were elaborated by foundry, and their as-cast microstructures were characterized. Samples of all alloys were exposed to 1127 °C and 1237 °C for 24 hours to characterize their stabilized microstructures. The surface fractions of chromium carbides and tantalum carbides were measured by image analysis, and their evolutions vs the chromium content were studied. For the chosen C and Ta contents, it appears that obtaining TaC only is possible by decreasing the chromium content to 10 wt pct. At the same time, TaC fractions are unfortunately too low because a large portion of tantalum integrates into the solid solution in the matrix. A second consequence is a critical decrease in oxidation resistance. Other possible methods to stabilize TaC as a single carbide are evocated, such as the simultaneous increase in Ta and decrease in chromium from 30 wt pct Cr.

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Literature
1.
go back to reference [1] M. J. Donachie, S. J. Donachie: Superalloys: A Technical Guide, 2nd ed., ASM International, Materials Park, 2002, pp. 79-90. [1] M. J. Donachie, S. J. Donachie: Superalloys: A Technical Guide, 2nd ed., ASM International, Materials Park, 2002, pp. 79-90.
2.
go back to reference [2] M. Durand-Charre: The microstructures of Superalloys, CRC Press, Boca Raton, 1997, pp. 10-11. [2] M. Durand-Charre: The microstructures of Superalloys, CRC Press, Boca Raton, 1997, pp. 10-11.
3.
go back to reference D. Young, High Temperature Oxidation and Corrosion of Metals, Elsevier, 2008, pp. 34-37. D. Young, High Temperature Oxidation and Corrosion of Metals, Elsevier, 2008, pp. 34-37.
4.
go back to reference [4] P. Kofstad, High Temperature Corrosion, Elsevier Applied Science, London, 1988, pp. 370-371. [4] P. Kofstad, High Temperature Corrosion, Elsevier Applied Science, London, 1988, pp. 370-371.
5.
go back to reference J. Di Martino: Oxidation at High Temperature and Corrosion by the C3 Molten Glass of Superalloys Based on Cobalt. Ph.D. Thesis, Henri Poincaré University, Vandoeuvre-lès-Nancy, 2002, pp. 14–15. J. Di Martino: Oxidation at High Temperature and Corrosion by the C3 Molten Glass of Superalloys Based on Cobalt. Ph.D. Thesis, Henri Poincaré University, Vandoeuvre-lès-Nancy, 2002, pp. 14–15.
6.
go back to reference S. Michon: Metallurgical and Mechanical Optimization of Cobalt-Based Superalloys for Glass-Forming Uses at 1200°C. Ph.D. Thesis, Henri Poincaré University, Vandoeuvre-lès-Nancy, 2004, pp. 73–78. S. Michon: Metallurgical and Mechanical Optimization of Cobalt-Based Superalloys for Glass-Forming Uses at 1200°C. Ph.D. Thesis, Henri Poincaré University, Vandoeuvre-lès-Nancy, 2004, pp. 73–78.
7.
go back to reference [7] C. T. Sims, W. C. Hagel: The Superalloys, John Wiley & Sons, New York, 1972, pp. 52-55. [7] C. T. Sims, W. C. Hagel: The Superalloys, John Wiley & Sons, New York, 1972, pp. 52-55.
8.
go back to reference [8] E. F. Bradley: Superalloys: A Technical Guide, ASM International, Metals Park, 1988, pp. 39-40. [8] E. F. Bradley: Superalloys: A Technical Guide, ASM International, Metals Park, 1988, pp. 39-40.
9.
go back to reference [9] O. Renck, P. Ghosh and R. Pippan: Scripta Materialia, 2017, 137, pp. 60-63.CrossRef [9] O. Renck, P. Ghosh and R. Pippan: Scripta Materialia, 2017, 137, pp. 60-63.CrossRef
10.
go back to reference [10] Z. Wang, Y. Yuan, K. Arshad, J. Wang, Z. Zhou, J. Tang, G.-H. Lu: Fusion Engineering and Design, 2017, 125, pp. 496-502.CrossRef [10] Z. Wang, Y. Yuan, K. Arshad, J. Wang, Z. Zhou, J. Tang, G.-H. Lu: Fusion Engineering and Design, 2017, 125, pp. 496-502.CrossRef
11.
go back to reference [11] Y. Mu, H. Liu, Y. Liu, X. Zhang, Y. Jiang and T. Dong: Journal of Alloys and Compounds, 2017, 714, pp. 668-680.CrossRef [11] Y. Mu, H. Liu, Y. Liu, X. Zhang, Y. Jiang and T. Dong: Journal of Alloys and Compounds, 2017, 714, pp. 668-680.CrossRef
12.
go back to reference C. Mathiou, A. Poulia, E. Georgatis, and A.E. Karantzalis: Mater. Chem. Phys., 2017 (in press). C. Mathiou, A. Poulia, E. Georgatis, and A.E. Karantzalis: Mater. Chem. Phys., 2017 (in press).
13.
go back to reference [13] X. Feng, J. Zhang, Z. Xia, W. Fu, K. Wu, G. Liu and J. Sun: Materials Letters, 2018, 210, pp. 84-87.CrossRef [13] X. Feng, J. Zhang, Z. Xia, W. Fu, K. Wu, G. Liu and J. Sun: Materials Letters, 2018, 210, pp. 84-87.CrossRef
14.
go back to reference [14] F. Körmann, A. V. Ruban and M. H. F. Sluiter: Materials Research Letters, 2017, 5(1), 35-40.CrossRef [14] F. Körmann, A. V. Ruban and M. H. F. Sluiter: Materials Research Letters, 2017, 5(1), 35-40.CrossRef
15.
go back to reference [15] N. D. Stepanov, N. Y. Yurchenko, S. V. Zherebtsov, M. A. Tikhonovsky and G. A. Salishchev: Materials Letters, 2018, 211, pp. 87-90.CrossRef [15] N. D. Stepanov, N. Y. Yurchenko, S. V. Zherebtsov, M. A. Tikhonovsky and G. A. Salishchev: Materials Letters, 2018, 211, pp. 87-90.CrossRef
16.
go back to reference [16] L. Lilensten, J.-P. Couzinié, J. Bourgon, L. Perrière, G. Dirras, F. Prima and I. Guillot: Materials Research Letters, 2017, 5(2), pp. 110-116.CrossRef [16] L. Lilensten, J.-P. Couzinié, J. Bourgon, L. Perrière, G. Dirras, F. Prima and I. Guillot: Materials Research Letters, 2017, 5(2), pp. 110-116.CrossRef
17.
go back to reference H. Jiang, K. Han, D. Qiao, Y. Lu, Z. Cao, and T. Li: Mater. Chem. Phys., 2017 (in press). H. Jiang, K. Han, D. Qiao, Y. Lu, Z. Cao, and T. Li: Mater. Chem. Phys., 2017 (in press).
18.
go back to reference [18] Y. T. Xu, Q.-Z. Sha and T.-D. Xia: Zhongguo Youse Jinshu Xuebao, 2016, 26(2), pp. 302-309. [18] Y. T. Xu, Q.-Z. Sha and T.-D. Xia: Zhongguo Youse Jinshu Xuebao, 2016, 26(2), pp. 302-309.
19.
go back to reference [19] Y. Guo, F. Zhong, Y. Yu, S. Li and J. Sha: Journal of Alloys and Compounds, 2017, 710, 725-735.CrossRef [19] Y. Guo, F. Zhong, Y. Yu, S. Li and J. Sha: Journal of Alloys and Compounds, 2017, 710, 725-735.CrossRef
20.
go back to reference [20] L. Karge, R. Gilles, D. Mukherji, P. Strunz, P. Beran, M. Hofmann, J. Gavilano, U. Keiderling, O. Dolotko, A. Kriele, A. Neubert, J. Rösler and W. Petry: Acta Materialia, 2017, 132, pp. 354-366.CrossRef [20] L. Karge, R. Gilles, D. Mukherji, P. Strunz, P. Beran, M. Hofmann, J. Gavilano, U. Keiderling, O. Dolotko, A. Kriele, A. Neubert, J. Rösler and W. Petry: Acta Materialia, 2017, 132, pp. 354-366.CrossRef
22.
go back to reference G. W. Meetham, M. H. Van de Voorde, Materials for High Temperature Engineering Applications, Springer, 2012, p. 83. G. W. Meetham, M. H. Van de Voorde, Materials for High Temperature Engineering Applications, Springer, 2012, p. 83.
23.
go back to reference J. Di Martino, S., L. Aranda, P. Berthod, R. Podor and C. Rapin: Annales de Chimie – Sciences des Matériaux, 2003, 28 (Suppl. 1), pp. S231-8. J. Di Martino, S., L. Aranda, P. Berthod, R. Podor and C. Rapin: Annales de ChimieSciences des Matériaux, 2003, 28 (Suppl. 1), pp. S231-8.
24.
go back to reference [24] P. Berthod, S. Michon, J. Di Martino, S. Mathieu, S. Noël, R. Podor and C. Rapin: Calphad, 2003, 27(3), pp. 279-88.CrossRef [24] P. Berthod, S. Michon, J. Di Martino, S. Mathieu, S. Noël, R. Podor and C. Rapin: Calphad, 2003, 27(3), pp. 279-88.CrossRef
25.
go back to reference [25] S. Michon, P. Berthod, L. Aranda, C. Rapin, R. Podor and P. Steinmetz: Calphad, 2003, 27(3), pp. 289-94.CrossRef [25] S. Michon, P. Berthod, L. Aranda, C. Rapin, R. Podor and P. Steinmetz: Calphad, 2003, 27(3), pp. 289-94.CrossRef
26.
go back to reference S. Michon, L. Aranda, P. Berthod and P. Steinmetz: La Revue de Métallurgie – C.I.T./Science et Génie des Matériaux, 2004, 9, pp. 651-62.CrossRef S. Michon, L. Aranda, P. Berthod and P. Steinmetz: La Revue de MétallurgieC.I.T./Science et Génie des Matériaux, 2004, 9, pp. 651-62.CrossRef
27.
go back to reference [27] P. Berthod, Y. Hamini, L. Aranda and L. Héricher: Calphad, 2007, 31(3), pp. 351-60.CrossRef [27] P. Berthod, Y. Hamini, L. Aranda and L. Héricher: Calphad, 2007, 31(3), pp. 351-60.CrossRef
28.
go back to reference [28] P. Berthod, L. Aranda, C. Vébert and S. Michon: Calphad, 2004, 28(2), pp. 159-166.CrossRef [28] P. Berthod, L. Aranda, C. Vébert and S. Michon: Calphad, 2004, 28(2), pp. 159-166.CrossRef
29.
go back to reference [29] L. Zheng, C. Gu and G. Zhang: Xiyou Jishu Cailiao Yu Gongcheng, 2005, 34(2), pp. 194-198. [29] L. Zheng, C. Gu and G. Zhang: Xiyou Jishu Cailiao Yu Gongcheng, 2005, 34(2), pp. 194-198.
30.
go back to reference [30] X. Z. Qin, J. T. Guo, C. Yuan, J. S. Hou and H. Q. Ye: Materials Letters, 2008, 62, pp. 2275-2278.CrossRef [30] X. Z. Qin, J. T. Guo, C. Yuan, J. S. Hou and H. Q. Ye: Materials Letters, 2008, 62, pp. 2275-2278.CrossRef
31.
go back to reference [31] K. Zhao, Y. H. Ma, and L. H. Lou: Journal of Alloys and Compounds, 2009, 475, pp. 648-651.CrossRef [31] K. Zhao, Y. H. Ma, and L. H. Lou: Journal of Alloys and Compounds, 2009, 475, pp. 648-651.CrossRef
32.
go back to reference [32] L. Zheng, G. Zhang, T. L. Lee, M. J. Gorley, Y. Wang, C. Xiao and Z. Li: Materials & Design, 2014, 21, pp. 61-9.CrossRef [32] L. Zheng, G. Zhang, T. L. Lee, M. J. Gorley, Y. Wang, C. Xiao and Z. Li: Materials & Design, 2014, 21, pp. 61-9.CrossRef
33.
go back to reference [33] E. Conrath and P. Berthod: Materials at High Temperature, 2016, 33(2), pp.189-197.CrossRef [33] E. Conrath and P. Berthod: Materials at High Temperature, 2016, 33(2), pp.189-197.CrossRef
34.
go back to reference [34] P. Berthod, E. Conrath: Materials Science: An Indian Journal, 2015, 13(11), pp. 347-352. [34] P. Berthod, E. Conrath: Materials Science: An Indian Journal, 2015, 13(11), pp. 347-352.
35.
36.
37.
go back to reference [37] Y. Liu, Y. Jiang, R. Zhou, J. Feng: Journal of Alloys and Compounds, 2014, 582, pp. 500-504.CrossRef [37] Y. Liu, Y. Jiang, R. Zhou, J. Feng: Journal of Alloys and Compounds, 2014, 582, pp. 500-504.CrossRef
38.
go back to reference [38] D. L. Shu, S. G. Tian, N. Tian, J. Xie, Y. Su, Materials Science and Engineering A, 2017, 700, pp. 152- 161.CrossRef [38] D. L. Shu, S. G. Tian, N. Tian, J. Xie, Y. Su, Materials Science and Engineering A, 2017, 700, pp. 152- 161.CrossRef
39.
go back to reference [39] L. Zhang, H. Liu, X. He, R. Din, X. Qu, M. Qin, Z. Li, G. Zhang, Materials Characterization, 2012, 67, pp. 52-64.CrossRef [39] L. Zhang, H. Liu, X. He, R. Din, X. Qu, M. Qin, Z. Li, G. Zhang, Materials Characterization, 2012, 67, pp. 52-64.CrossRef
Metadata
Title
Microstructures and Surface Stabilities of {Ni-0.4C-6Ta-xCr, 0 ≤ x ≤ 50 Wt Pct} Cast Alloys at High Temperature
Author
Patrice Berthod
Publication date
14-03-2018
Publisher
Springer US
Published in
Metallurgical and Materials Transactions A / Issue 6/2018
Print ISSN: 1073-5623
Electronic ISSN: 1543-1940
DOI
https://doi.org/10.1007/s11661-018-4574-7

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